GAPDH, glyceraldehyde-3-phosphate dehydrogenase

GAPDH,甘油醛 - 3 - 磷酸脱氢酶
  • 文章类型: Journal Article
    聚乙二醇化干扰素α(pegIFNα)通常用于治疗感染HDV的人。然而,其在HDV感染细胞中的作用模式仍然难以捉摸,只有少数人对pegIFNα治疗有反应。在这里,我们旨在评估三种不同的克隆HDV菌株对pegIFNα的反应性。我们使用先前克隆的HDV基因型1株(称为HDV-1a),在体外对干扰素-α不敏感,一种新的HDV菌株(HDV-1p),我们从一个个体中分离出,后来达到对IFNα治疗的持续反应,和一个系统发育遥远的基因型3菌株(HDV-3)。
    将PegIFNα给予感染HBV和不同HDV毒株的人肝嵌合小鼠或从嵌合小鼠分离的HBV/HDV感染的人肝细胞。通过qPCR分析病毒学参数和宿主反应,测序,测序免疫印迹,RNA原位杂交和免疫荧光染色。
    PegIFNα治疗有效降低了感染HBV/HDV-1p和HBV/HDV-3的小鼠的HDVRNA病毒血症(~2-log)和肝内HDV标志物。相比之下,HDV参数在小鼠(长达9周)和感染HBV/HDV-1a的分离细胞中均不受pegIFNα治疗的影响。值得注意的是,在接受pegIFNα的所有三个HBV/HDV感染的小鼠组中,HBV病毒血症有效降低(〜2-log)和人干扰素刺激的基因类似诱导。基因组测序显示所有三个分离株中高度保守的核酶和L-丁型肝炎抗原翻译后修饰位点。
    我们的比较研究表明pegIFNα在体内稳定感染的人肝细胞中降低HDV负荷的能力以及IFNα反应性的复杂病毒特异性决定簇的存在。
    了解抵抗HDV感染的因素对于开发治愈性疗法至关重要。我们比较了三种不同的克隆HDV菌株在慢性感染小鼠中对聚乙二醇化干扰素α的反应性。这些HDV分离株对治疗的不同反应性突出了HDV毒株之间先前低估的异质性。
    UNASSIGNED: Pegylated interferon alpha (pegIFNα) is commonly used for the treatment of people infected with HDV. However, its mode of action in HDV-infected cells remains elusive and only a minority of people respond to pegIFNα therapy. Herein, we aimed to assess the responsiveness of three different cloned HDV strains to pegIFNα. We used a previously cloned HDV genotype 1 strain (dubbed HDV-1a) that appeared insensitive to interferon-α in vitro, a new HDV strain (HDV-1p) we isolated from an individual achieving later sustained response to IFNα therapy, and one phylogenetically distant genotype 3 strain (HDV-3).
    UNASSIGNED: PegIFNα was administered to human liver chimeric mice infected with HBV and the different HDV strains or to HBV/HDV infected human hepatocytes isolated from chimeric mice. Virological parameters and host responses were analysed by qPCR, sequencing, immunoblotting, RNA in situ hybridisation and immunofluorescence staining.
    UNASSIGNED: PegIFNα treatment efficiently reduced HDV RNA viraemia (∼2-log) and intrahepatic HDV markers both in mice infected with HBV/HDV-1p and HBV/HDV-3. In contrast, HDV parameters remained unaffected by pegIFNα treatment both in mice (up to 9 weeks) and in isolated cells infected with HBV/HDV-1a. Notably, HBV viraemia was efficiently lowered (∼2-log) and human interferon-stimulated genes similarly induced in all three HBV/HDV-infected mouse groups receiving pegIFNα. Genome sequencing revealed highly conserved ribozyme and L-hepatitis D antigen post-translational modification sites among all three isolates.
    UNASSIGNED: Our comparative study indicates the ability of pegIFNα to lower HDV loads in stably infected human hepatocytes in vivo and the existence of complex virus-specific determinants of IFNα responsiveness.
    UNASSIGNED: Understanding factors counteracting HDV infections is paramount to develop curative therapies. We compared the responsiveness of three different cloned HDV strains to pegylated interferon alpha in chronically infected mice. The different responsiveness of these HDV isolates to treatment highlights a previously underestimated heterogeneity among HDV strains.
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  • 文章类型: Journal Article
    未经证实:膝骨关节炎(KOA)是一种非常普遍的肌肉骨骼疾病,其特征是软骨退化和软骨下骨(SCB)的异常重塑。特立帕肽(PTH(1-34))是治疗骨质疏松症(OP)的有效合成代谢药物,可调节骨保护素(OPG)/核因子配体受体激活剂(RANKL)/RANK信号传导,其还通过改善软骨降解和抑制SCB的异常重塑而对KOA具有治疗作用。然而,PTH(1-34)治疗KOA的机制仍不确定,有待进一步探讨.因此,我们比较了PTH(1-34)对创伤后KOA小鼠模型的影响,以探讨其潜在的治疗作用和机制.
    未经证实:体内研究,研究并比较了八周大的雄性小鼠,包括野生型(WT)(n=54)和OPG-/-(n=54)。创伤后KOA模型是通过内侧半月板(DMM)的失稳建立的。WT小鼠被随机分为三组:假手术组(WT-sham;n=18),DMM组(WT-DMM;n​=18),和PTH(1-34)治疗组(WT-DMM​+PTH(1-34);n=18)。同样,OPG-/-小鼠也被随机分为三组。设计的老鼠在4号被处死,8th,和第12周评估KOA进展。为了进一步探讨PTH(1-34)的软骨保护作用,用不同浓度的PTH(1-34)体外刺激ATDC5软骨细胞。
    UNASSIGNED:与WT-sham小鼠相比,在WT-DMM小鼠中检测到软骨厚度降低和糖胺聚糖(GAG)损失方面的显著的软骨磨损。PTH(1-34)通过减轻磨损表现出软骨保护作用,保留厚度和GAG含量。此外,PTH(1-34)治疗后,SCB的恶化得到缓解,PTH1R/OPG/RANKL/RANK的表达增加。在OPG-/-小鼠中,DMM小鼠的软骨表现出典型的KOA改变,具有较高的OARSI评分和较薄的软骨。软骨损伤减轻,但SCB的异常重塑对PTH(1-34)治疗没有任何反应。与WT-DMM小鼠相比,OPG-/-DMM小鼠用较薄的软骨捕获了更具侵略性的KOA,严重的软骨损伤,SCB的异常重塑较多。此外,WT-DMM小鼠和OPG-/-DMM小鼠的受损软骨均得到缓解,但在给予PTH后,WT-DMM小鼠中只有SCB的恶化得到缓解(1-34)。体外研究,PTH(1-34)可以促进软骨细胞的活力,增强细胞外基质(ECM)的合成(AGC,COLII,和SOX9)在mRNA和蛋白质水平,但抑制炎性细胞因子(TNF-α和IL-6)的分泌。
    UNASSIGNED:在WT小鼠中,软骨的磨损均减轻,SCB的异常重塑受到抑制,但在OPG-/-小鼠中仅观察到软骨保护作用。PTH(1-34)通过在体内减缓软骨退变以及通过在体外促进软骨细胞的增殖和增强ECM合成而表现出软骨保护作用。当前的研究表明,受干扰的SCB的抢救取决于OPG的调节,而软骨保护作用与OPG的调节无关。这为KOA的治疗提供了证据。
    UNASSIGNED:全身给药PTH(1-34)可以不同的机制对软骨和SCB产生治疗作用,以缓解KOA进展,这可能是KOA的一种新疗法。
    UNASSIGNED: Knee osteoarthritis (KOA) is a highly prevalent musculoskeletal disorder characterized by degeneration of cartilage and abnormal remodeling of subchondral bone (SCB). Teriparatide (PTH (1-34)) is an effective anabolic drug for osteoporosis (OP) and regulates osteoprotegerin (OPG)/receptor activator of nuclear factor ligand (RANKL)/RANK signaling, which also has a therapeutic effect on KOA by ameliorating cartilage degradation and inhibiting aberrant remodeling of SCB. However, the mechanisms of PTH (1-34) in treating KOA are still uncertain and remain to be explored. Therefore, we compared the effect of PTH (1-34) on the post-traumatic KOA mouse model to explore the potential therapeutic effect and mechanisms.
    UNASSIGNED: In vivo study, eight-week-old male mice including wild-type (WT) (n ​= ​54) and OPG-/- (n ​= ​54) were investigated and compared. Post-traumatic KOA model was created by destabilization of medial meniscus (DMM). WT mice were randomly assigned into three groups: the sham group (WT-sham; n ​= ​18), the DMM group (WT-DMM; n ​= ​18), and the PTH (1-34)-treated group (WT-DMM ​+ ​PTH (1-34); n ​= ​18). Similarly, the OPG-/- mice were randomly allocated into three groups as well. The designed mice were executed at the 4th, 8th, and 12th weeks to evaluate KOA progression. To further explore the chondro-protective of PTH (1-34), the ATDC5 chondrocytes were stimulated with different concentrations of PTH (1-34) in vitro.
    UNASSIGNED: Compared with the WT-sham mice, significant wear of cartilage in terms of reduced cartilage thickness and glycosaminoglycan (GAG) loss was detected in the WT-DMM mice. PTH (1-34) exhibited cartilage-protective by alleviating wear, retaining the thickness and GAG contents. Moreover, the deterioration of the SCB was alleviated and the expression of PTH1R/OPG/RANKL/RANK were found to increase after PTH (1-34) treatment. Among the OPG-/- mice, the cartilage of the DMM mice displayed typical KOA change with higher OARSI score and thinner cartilage. The damage of the cartilage was alleviated but the abnormal remodeling of SCB didn\'t show any response to the PTH (1-34) treatment. Compared with the WT-DMM mice, the OPG-/--DMM mice caught more aggressive KOA with thinner cartilage, sever cartilage damage, and more abnormal remodeling of SCB. Moreover, both the damaged cartilage from the WT-DMM mice and the OPG-/--DMM mice were alleviated but only the deterioration of SCB in WT-DMM mice was alleviated after the administration of PTH (1-34). In vitro study, PTH (1-34) could promote the viability of chondrocytes, enhance the synthesis of extracellular matrix (ECM) (AGC, COLII, and SOX9) at the mRNA and protein level, but inhibit the secretion of inflammatory cytokines (TNF-α and IL-6).
    UNASSIGNED: Both wear of the cartilage was alleviated and aberrant remodeling of the SCB was inhibited in the WT mice, but only the cartilage-protective effect was observed in the OPG-/- mice. PTH (1-34) exhibited chondro-protective effect by decelerating cartilage degeneration in vivo as well as by promoting the proliferation and enhancing ECM synthesis of chondrocytes in vitro. The current investigation implied that the rescue of the disturbed SCB is dependent on the regulation of OPG while the chondro-protective effect is independent of modulation of OPG, which provides proof for the treatment of KOA.
    UNASSIGNED: Systemic administration of PTH (1-34) could exert a therapeutic effect on both cartilage and SCB in different mechanisms to alleviate KOA progression, which might be a novel therapy for KOA.
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  • 文章类型: Journal Article
    未经证实:牙周炎是成人中非常普遍的慢性炎症之一。近年来环状RNA(circularRNAs,circRNAs)在炎症调控中的重要性逐渐被报道,但circRNAcirc_0099630在牙周炎中的作用尚未见报道。
    UNASSIGNED:使用定量实时聚合酶链反应(qRT-PCR)或Westernblot测量circ_0099630,microRNA-940(miR-940)和肿瘤坏死因子(TNF)受体相关因子6(TRAF6)的含量。炎症因子分泌,细胞增殖,应用酶联免疫吸附试验(ELISA)进行细胞凋亡分析,细胞计数套件-8(CCK8),5-乙炔基-2'-脱氧尿苷(EdU)和流式细胞术,分别。Westernblot还分析了RELA原癌基因(P65)和IkappaBalpha(IκBα)的磷酸化水平,核因子κB(NF-κB)途径的关键分子。通过荧光素酶报告系统和RNA免疫沉淀(RIP)测定验证miR-940与circ_0099630或TRAF6之间的关系。
    UNASSIGNED:在牙周炎中观察到更高的circ_0099630和TRAF6丰度和更低的miR-940表达,circ_0099630敲除可减轻脂多糖(LPS)诱导的人PDL细胞(PDLCs)损伤。miR-940和circ_0099630或TRAF6之间的关系被证明,而miR-940下调降低si-circ_0099630对LPS过表达诱导的PDLCs损伤的修复作用。同样,TRAF6上调削弱了miR-940过表达对LPS诱导的PDLCs损伤的缓解作用。Circ_0099630沉默明显抑制了P65和IκBα的磷酸化水平,从而通过作用于miR-940/TRAF6轴减弱了炎症反应。
    UNASSIGNED:沉默circ_0099630通过靶向miR-940/TRAF6/NF-κB减轻LPS诱导的牙周膜细胞损伤。
    UNASSIGNED: Periodontitis is one of the highly prevalent chronic inflammatory conditions in adults. The importance of circular RNAs (circRNAs) in the regulation of inflammation has been gradually reported in recent years, but the role of circRNA circ_0099630 in periodontitis has not been reported.
    UNASSIGNED: The contents of circ_0099630, microRNA-940 (miR-940) and tumor necrosis factor (TNF) receptor-associated factor 6 (TRAF6) were measured using quantitative real-time polymerase chain reaction (qRT-PCR) or Western blot. Inflammatory factor secretion, cell proliferation, and apoptosis were analyzed under the application of Enzyme-linked immunosorbent assay (ELISA), Cell Counting Kit-8 (CCK8), 5-ethynyl-2\'-deoxyuridine (EdU) and flow cytometry, respectively. The Western blot also analyzed the phosphorylation levels of RELA proto-oncogene (P65) and IkappaBalpha (IκBα), key molecules of the nuclear factor kappa-B (NF-κB) pathway. The relationship between miR-940 and circ_0099630 or TRAF6 was verified by luciferase reporter system and RNA immunoprecipitation (RIP) assay.
    UNASSIGNED: Higher abundance of circ_0099630 and TRAF6 and lower miR-940 expression were observed in periodontitis, and circ_0099630 knockdown attenuated the damage of human PDL cells (PDLCs) induced by lipopolysaccharides (LPS). The relationship between miR-940 and circ_0099630 or TRAF6 was evidenced, while miR-940 downregulation diminished the repair effect of si-circ_0099630 on overexpression LPS-induced damage in PDLCs. Similarly, TRAF6 upregulation impaired the mitigating effect of miR-940 overexpression on LPS-induced injury in PDLCs. Circ_0099630 silencing evidently curbed the phosphorylation levels of P65 and IκBα and thus attenuating the inflammatory response by acting on the miR-940/TRAF6 axis.
    UNASSIGNED: Silencing circ_0099630 alleviates LPS-induced periodontal ligament cell injury via targeting miR-940/TRAF6/NF-κB in periodontitis.
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  • 文章类型: Journal Article
    有机磷酸酯(OPEs)广泛存在于各种环境介质中,并能破坏甲状腺内分泌信号通路。OPEs破坏甲状腺激素(TH)信号转导的机制尚不完全清楚。这里,我们提供了体内-体外-计算机证据,将OPEs作为环境THs竞争性地进入大脑,通过多种信号通路抑制斑马鱼的生长。OPEs可以结合转甲状腺素蛋白(TTR)和甲状腺素结合球蛋白,从而影响血液中TH的运输,并通过血脑屏障通过TTR到达大脑。当GH3细胞暴露于OPEs时,鉴于OPEs是TH的竞争性抑制剂,细胞增殖被显著抑制.甲酚二苯基磷酸酯被证明是TH的有效拮抗剂。慢性暴露于OPEs通过干扰甲状腺过氧化物酶和甲状腺球蛋白抑制TH合成,显著抑制斑马鱼的生长。基于基因表达调控与基因本体论和京都百科全书的基因和基因组数据库的比较,与甲状腺内分泌功能相关的信号通路,如受体-配体结合和调节激素水平,被确定为受到暴露于OPEs的影响。影响还与脂质的生物合成和代谢有关,和神经活性配体-受体相互作用。这些发现为OPEs破坏斑马鱼甲状腺通路的机制提供了全面的理解。
    Organophosphate esters (OPEs) are widespread in various environmental media, and can disrupt thyroid endocrine signaling pathways. Mechanisms by which OPEs disrupt thyroid hormone (TH) signal transduction are not fully understood. Here, we present in vivo-in vitro-in silico evidence establishing OPEs as environmental THs competitively entering the brain to inhibit growth of zebrafish via multiple signaling pathways. OPEs can bind to transthyretin (TTR) and thyroxine-binding globulin, thereby affecting the transport of TH in the blood, and to the brain by TTR through the blood-brain barrier. When GH3 cells were exposed to OPEs, cell proliferation was significantly inhibited given that OPEs are competitive inhibitors of TH. Cresyl diphenyl phosphate was shown to be an effective antagonist of TH. Chronic exposure to OPEs significantly inhibited the growth of zebrafish by interfering with thyroperoxidase and thyroglobulin to inhibit TH synthesis. Based on comparisons of modulations of gene expression with the Gene Ontology and Kyoto Encyclopedia of Genes and Genomes databases, signaling pathways related to thyroid endocrine functions, such as receptor-ligand binding and regulation of hormone levels, were identified as being affected by exposure to OPEs. Effects were also associated with the biosynthesis and metabolism of lipids, and neuroactive ligand-receptor interactions. These findings provide a comprehensive understanding of the mechanisms by which OPEs disrupt thyroid pathways in zebrafish.
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  • 文章类型: Journal Article
    Fabry病是由GLA基因突变引起的X连锁糖脂贮积障碍,导致溶酶体酶α半乳糖苷酶A(AGA)缺乏。因此,糖脂底物Gb3在关键组织和器官中积累,产生进行性衰弱疾病。在法布里病中,高达80%的患者经历了难以治疗的终身神经性疼痛,并极大地影响了他们的生活质量。AGA缺乏导致神经性疼痛的分子机制尚不清楚。部分原因是缺乏可用于在细胞水平上研究潜在病理的体外模型。使用CRISPR-Cas9基因编辑,我们从人类胚胎干细胞系产生了两个GLA基因突变的克隆.我们的克隆细胞系保持了正常的干细胞形态和多能性标记,并显示了法布里病的表型特征,包括缺乏AGA活性和Gb3的细胞内积累。证实了GLA基因外显子1中预测位置的突变。使用已建立的双重SMAD抑制/WNT激活技术,我们能够证明我们缺乏AGA的克隆,以及野生型对照,可以分化为表达疼痛受体的外周型感觉神经元。这种遗传和生理相关的人体模型系统为研究法布里病周围神经病变的细胞机制提供了一种新的有前途的工具,并可能有助于开发新的治疗策略,以帮助减轻这种疾病的负担。
    Fabry disease is an X-linked glycolipid storage disorder caused by mutations in the GLA gene which result in a deficiency in the lysosomal enzyme alpha galactosidase A (AGA). As a result, the glycolipid substrate Gb3 accumulates in critical tissues and organs producing a progressive debilitating disease. In Fabry disease up to 80% of patients experience life-long neuropathic pain that is difficult to treat and greatly affects their quality of life. The molecular mechanisms by which deficiency of AGA leads to neuropathic pain are not well understood, due in part to a lack of in vitro models that can be used to study the underlying pathology at the cellular level. Using CRISPR-Cas9 gene editing, we generated two clones with mutations in the GLA gene from a human embryonic stem cell line. Our clonal cell lines maintained normal stem cell morphology and markers for pluripotency, and showed the phenotypic characteristics of Fabry disease including absent AGA activity and intracellular accumulation of Gb3. Mutations in the predicted locations in exon 1 of the GLA gene were confirmed. Using established techniques for dual-SMAD inhibition/WNT activation, we were able to show that our AGA-deficient clones, as well as wild-type controls, could be differentiated to peripheral-type sensory neurons that express pain receptors. This genetically and physiologically relevant human model system offers a new and promising tool for investigating the cellular mechanisms of peripheral neuropathy in Fabry disease and may assist in the development of new therapeutic strategies to help lessen the burden of this disease.
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  • 文章类型: Journal Article
    UNASSIGNED:肌肉减少症是一种新出现的危险因素,会加重老年人群的生活质量。因为众所周知,韩国红参(RG)对缓解疲劳和提高身体机能有很大的作用,研究其作为抗肌肉节制药物的潜力是非常宝贵的。
    UNASSIGNED:在用C2-神经酰胺处理的C2C12成肌细胞中评估了韩国红参非皂苷部分(RGNS)的抗肌肉节制作用,以诱导衰老表型,和用含有2%RGNS(w/w)的食物饮食喂养的22月龄小鼠再吃4个月。
    未经证实:RGNS治疗可显着减轻细胞内脂质积累所指示的细胞衰老,溶酶体β-半乳糖苷酶的增加,C2C12成肌细胞的增殖能力降低。使用皂苷部分没有观察到这种效果。在一只年老的老鼠身上,4个月的RGNS饮食显着改善了与衰老相关的肌肉质量和力量损失,通过后肢骨骼肌的重量评估,如胫骨前肌(TA),趾长伸肌(EDL),腓肠肌(GN)和比目鱼(SOL),和SOL肌肉的横截面积(CSA),以及握力和悬挂线测试中的行为,分别。在同一时期,RGNS治疗也延缓了SOL肌肉中与衰老相关的快速抽搐到缓慢抽搐的转变。
    UNASSIGNED:这些发现表明,RGNS的长期饮食可显着预防与衰老相关的肌肉萎缩和身体表现下降,因此,RGNS具有被开发为预防或改善肌肉减少症的药物的强大潜力。
    UNASSIGNED: Sarcopenia is a new and emerging risk factor aggravating the quality of life of elderly population. Because Korean Red Ginseng (RG) is known to have a great effect on relieving fatigue and enhancing physical performance, it is invaluable to examine its potential as an anti-sarcopenic drug.
    UNASSIGNED: Anti-sarcopenic effect of non-saponin fraction of Korean Red Ginseng (RGNS) was evaluated in C2C12 myoblasts treated with C2-ceramide to induce senescence phenotypes, and 22-month-old mice fed with chow diet containing 2% RGNS (w/w) for 4 further months.
    UNASSIGNED: The RGNS treatment significantly alleviated cellular senescence indicated by intracellular lipid accumulation, increased amount of lysosomal β-galactosidase, and reduced proliferative capacity in C2C12 myoblasts. This effect was not observed with saponin fraction. In an aged mouse, the 4-month-RGNS diet significantly improved aging-associated loss of muscle mass and strength, assessed by the weights of hindlimb skeletal muscles such as tibialis anterior (TA), extensor digitorum longus (EDL), gastrocnemius (GN) and soleus (SOL), and the cross-sectional area (CSA) of SOL muscle, and the behaviors in grip strength and hanging wire tests, respectively. During the same period, an aging-associated shift of fast-to slow-twitch muscle in SOL muscle was also retarded by the RGNS treatment.
    UNASSIGNED: These findings suggested that the long-term diet of RGNS significantly prevented aging-associated muscle atrophy and reduced physical performance, and thus RGNS has a strong potential to be developed as a drug that prevents or improves sarcopenia.
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  • 文章类型: Journal Article
    蜱传脑炎病毒(TBEV),欧亚大陆医学上最相关的蜱传播黄病毒,针对宿主中枢神经系统,并经常引起严重的脑炎。TBEV诱导的神经发病机制的严重程度是高度细胞类型特异性的,造成这种差异的确切机制尚未完全描述。因此,我们对TBEV体外感染人类原代神经元(高细胞病变效应)和星形胶质细胞(低细胞病变效应)后宿主poly-(A)/miRNA/lncRNA表达的变化进行了综合分析.严重但不轻度的TBEV菌株感染导致较高的神经元死亡率。相比之下,人星形胶质细胞中任何一种TBEV菌株的感染都没有。通过miRNA/mRNA/lncRNA/vd-sRNA网络的计算机预测进行差异表达和剪接分析,发现炎症和免疫应答途径发生了显着变化。TBEVHypr感染神经元的神经系统发育和有丝分裂调节。负责上述现象的候选机制包括通过模仿内源性miRNA的差异表达的miRNA/lncRNA或vd-sRNA对宿主mRNA水平的特异性调节和病毒驱动的宿主前mRNA剪接的调节。我们建议这些因素是在不同细胞系中观察到的两种TBEV菌株的毒力表现差异的原因。这项工作带来了人类星形胶质细胞和神经元转录组变化的第一个复杂的概述在感染过程中由两个不同毒力的TBEV菌株。所得数据可作为进一步研究TBEV-宿主相互作用机制和TBEV发病机理相关过程的起点。
    Tick-borne encephalitis virus (TBEV), the most medically relevant tick-transmitted flavivirus in Eurasia, targets the host central nervous system and frequently causes severe encephalitis. The severity of TBEV-induced neuropathogenesis is highly cell-type specific and the exact mechanism responsible for such differences has not been fully described yet. Thus, we performed a comprehensive analysis of alterations in host poly-(A)/miRNA/lncRNA expression upon TBEV infection in vitro in human primary neurons (high cytopathic effect) and astrocytes (low cytopathic effect). Infection with severe but not mild TBEV strain resulted in a high neuronal death rate. In comparison, infection with either of TBEV strains in human astrocytes did not. Differential expression and splicing analyses with an in silico prediction of miRNA/mRNA/lncRNA/vd-sRNA networks found significant changes in inflammatory and immune response pathways, nervous system development and regulation of mitosis in TBEV Hypr-infected neurons. Candidate mechanisms responsible for the aforementioned phenomena include specific regulation of host mRNA levels via differentially expressed miRNAs/lncRNAs or vd-sRNAs mimicking endogenous miRNAs and virus-driven modulation of host pre-mRNA splicing. We suggest that these factors are responsible for the observed differences in the virulence manifestation of both TBEV strains in different cell lines. This work brings the first complex overview of alterations in the transcriptome of human astrocytes and neurons during the infection by two TBEV strains of different virulence. The resulting data could serve as a starting point for further studies dealing with the mechanism of TBEV-host interactions and the related processes of TBEV pathogenesis.
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  • 文章类型: Journal Article
    结肠癌,第三常见的癌症,死亡率高,预后极差。人参皂苷,中草药人参的活性成分,在各种癌症中发挥抗肿瘤作用,包括结肠癌.然而,人参皂苷抑制肿瘤的详细分子机制尚未完全阐明。这里,我们选择了具有代表性的人参皂苷Rg3,并首次报道了Rg3在人结肠癌细胞中诱导线粒体自噬,负责其抗癌作用。Rg3处理导致线粒体损伤和线粒体吞噬体的形成;当自噬被抑制时,受损线粒体的清除可以逆转。接下来,我们的结果表明,Rg3处理激活了PINK1-Parkin信号通路,并将Parkin和泛素蛋白募集到线粒体以诱导线粒体自噬.对Parkin靶标的GO分析显示Parkin与大量线粒体蛋白相互作用,调节线粒体的分子功能。细胞能量代谢酶GAPDH被验证为Parkin的新型底物,被帕金泛素化。此外,GAPDH参与Rg3诱导的线粒体自噬并调节Parkin向线粒体的易位。功能上,Rg3通过调节GAPDH的非溶瘤活性发挥抑制作用,这可能与细胞氧化应激有关。因此,我们的结果表明,帕金的GAPDH泛素化是线粒体自噬诱导的重要机制,有助于人参皂苷的肿瘤抑制功能,这可能是一种新的结肠癌治疗策略。
    Colon cancer, the third most frequent occurred cancer, has high mortality and extremely poor prognosis. Ginsenoside, the active components of traditional Chinese herbal medicine Panax ginseng, exerts antitumor effect in various cancers, including colon cancer. However, the detailed molecular mechanism of Ginsenoside in the tumor suppression have not been fully elucidated. Here, we chose the representative ginsenoside Rg3 and reported for the first time that Rg3 induces mitophagy in human colon cancer cells, which is responsible for its anticancer effect. Rg3 treatment leads to mitochondria damage and the formation of mitophagosome; when autophagy is inhibited, the clearance of damaged mitochondria can be reversed. Next, our results showed that Rg3 treatment activates the PINK1-Parkin signaling pathway and recruits Parkin and ubiquitin proteins to mitochondria to induce mitophagy. GO analysis of Parkin targets showed that Parkin interacts with a large number of mitochondrial proteins and regulates the molecular function of mitochondria. The cellular energy metabolism enzyme GAPDH is validated as a novel substrate of Parkin, which is ubiquitinated by Parkin. Moreover, GAPDH participates in the Rg3-induced mitophagy and regulates the translocation of Parkin to mitochondria. Functionally, Rg3 exerts the inhibitory effect through regulating the nonglycolytic activity of GAPDH, which could be associated with the cellular oxidative stress. Thus, our results revealed GAPDH ubiquitination by Parkin as a crucial mechanism for mitophagy induction that contributes to the tumor-suppressive function of ginsenoside, which could be a novel treatment strategy for colon cancer.
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  • 文章类型: Journal Article
    Parkin,E3泛素连接酶,通过靶向受损的线粒体进行线粒体自噬来维持线粒体稳态。越来越多的证据表明,关键线粒体自噬机制的乙酰化修饰会影响线粒体自噬水平,但潜在的机制知之甚少。这里,我们的研究表明,通过处理HDAC抑制组蛋白去乙酰化酶(HDAC)通过介导Parkin乙酰化激活线粒体自噬,导致抑制宫颈癌细胞增殖。生物信息学分析表明,Parkin在人宫颈癌中的表达与HDAC2的表达呈负相关。表明Parkin的乙酰化水平很低.使用质谱,Parkin被确定与两个上游分子相互作用,乙酰酶乙酰辅酶A乙酰转移酶1(ACAT1)和脱乙酰酶HDAC2。在辛二酰苯胺异羟肟酸(SAHA)的处理下,Parkin在位于Parkin蛋白的不同结构域中的赖氨酸残基129、220和349处被乙酰化。在体外实验中,Parkin的联合突变在很大程度上减弱了Parkin与PTEN诱导的推定激酶1(PINK1)的相互作用以及Parkin在线粒体自噬诱导和肿瘤抑制中的功能。在肿瘤异种移植物中,突变型Parkin的表达削弱了Parkin的肿瘤抑制作用,并降低了SAHA的抗癌活性。我们的结果揭示了在线粒体自噬和宫颈癌发生中控制Parkin的乙酰化依赖性调节机制,这为癌症治疗提供了一种新的线粒体自噬调节策略。
    Parkin, an E3 ubiquitin ligase, plays a role in maintaining mitochondrial homeostasis through targeting damaged mitochondria for mitophagy. Accumulating evidence suggests that the acetylation modification of the key mitophagy machinery influences mitophagy level, but the underlying mechanism is poorly understood. Here, our study demonstrated that inhibition of histone deacetylase (HDAC) by treatment of HDACis activates mitophagy through mediating Parkin acetylation, leading to inhibition of cervical cancer cell proliferation. Bioinformatics analysis shows that Parkin expression is inversely correlated with HDAC2 expression in human cervical cancer, indicating the low acetylation level of Parkin. Using mass spectrometry, Parkin is identified to interact with two upstream molecules, acetylase acetyl-CoA acetyltransferase 1 (ACAT1) and deacetylase HDAC2. Under treatment of suberoylanilide hydroxamic acid (SAHA), Parkin is acetylated at lysine residues 129, 220 and 349, located in different domains of Parkin protein. In in vitro experiments, combined mutation of Parkin largely attenuate the interaction of Parkin with PTEN induced putative kinase 1 (PINK1) and the function of Parkin in mitophagy induction and tumor suppression. In tumor xenografts, the expression of mutant Parkin impairs the tumor suppressive effect of Parkin and decreases the anticancer activity of SAHA. Our results reveal an acetylation-dependent regulatory mechanism governing Parkin in mitophagy and cervical carcinogenesis, which offers a new mitophagy modulation strategy for cancer therapy.
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  • 文章类型: Journal Article
    肝细胞癌(HCC)是一种侵袭性人类癌症,在全球范围内发病率不断上升。已经做出了许多努力来探索治疗HCC的药物疗法。如靶向酪氨酸激酶抑制剂,基于免疫的疗法和联合化疗。然而,目前的策略存在局限性,包括例如化学抗性。肿瘤的启动和进展是由代谢的重新编程驱动的,特别是在HCC发展过程中。最近,代谢相关脂肪性肝病(MAFLD),非酒精性脂肪性肝病(NAFLD)新命名法的重新评估,表明对肝脏疾病发病机制中代谢的认识日益提高,包括HCC,从而提出了针对异常代谢的肝癌治疗新策略。在这次审查中,我们通过突出葡萄糖的代谢目标来介绍方向,脂肪酸,氨基酸和谷氨酰胺代谢,适用于HCC药物干预。我们还总结和讨论了目前针对HCC治疗过程中代谢失调的药物和研究。此外,讨论了肝癌靶向代谢治疗的发现和发展的机遇和挑战。
    Hepatocellular carcinoma (HCC) is an aggressive human cancer with increasing incidence worldwide. Multiple efforts have been made to explore pharmaceutical therapies to treat HCC, such as targeted tyrosine kinase inhibitors, immune based therapies and combination of chemotherapy. However, limitations exist in current strategies including chemoresistance for instance. Tumor initiation and progression is driven by reprogramming of metabolism, in particular during HCC development. Recently, metabolic associated fatty liver disease (MAFLD), a reappraisal of new nomenclature for non-alcoholic fatty liver disease (NAFLD), indicates growing appreciation of metabolism in the pathogenesis of liver disease, including HCC, thereby suggesting new strategies by targeting abnormal metabolism for HCC treatment. In this review, we introduce directions by highlighting the metabolic targets in glucose, fatty acid, amino acid and glutamine metabolism, which are suitable for HCC pharmaceutical intervention. We also summarize and discuss current pharmaceutical agents and studies targeting deregulated metabolism during HCC treatment. Furthermore, opportunities and challenges in the discovery and development of HCC therapy targeting metabolism are discussed.
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