CHOP, C/EBP homologous protein

  • 文章类型: Journal Article
    日本脑炎病毒(JEV)在人类中的感染主要表现为体征和症状,包括非特异性发热疾病,关节痛,肌痛等.其次是由于宿主先天免疫和适应性免疫的共同作用而导致的分辨率。然而,在选择性的情况下,JEV侵犯中枢神经系统(CNS)引起并发症。由于宿主遗传和免疫差异而无法控制外周病毒复制的患者会经历以头痛形式表现的JEV相关神经系统并发症,恶心,脑膜脑炎,昏迷和最终死亡。JEV进入CNS激活事件的复杂级联,导致神经元生理学丧失,从而导致CNS组织完整性丧失。在目前的研究中,我们已经证明了JEV在调节神经元丙酮酸脱氢酶激酶1(PDK1)丰度及其对神经元健康的影响中的作用。JEV对神经元的感染最终导致PDK1丰度的上调。尽管抑制JEV诱导的PDK1上调伴随着JEV在神经元中的传播增强,PDK1上调的废除被证明可以改善神经元凋亡。观察到PDK1抑制相关的神经元死亡减少与神经元中活性氧(ROS)的产生减少有关。因此,我们的研究提供了可能的治疗靶标,该靶标在调节后可能有助于通过恢复JEV相关的ROS生成来对抗JEV感染相关的神经元凋亡。
    Infection by Japanese Encephalitis Virus (JEV) in humans is primarily characterized by signs and symptoms including non-specific febrile illness, arthralgia, myalgia etc. followed by its resolution due to joint action of host innate and adaptive immunity. However, in selective cases, complications arise owing to invasion of central nervous system (CNS) by JEV. Patients being unable to control peripheral viral replication owing to differences in host genetics and immunity experience JEV-associated neurological complications manifested in the form of headache, nausea, meningoencephalitis, coma and eventual death. Entry of JEV into CNS activates complex cascade of events resulting in loss of neuronal physiology and thus CNS tissue integrity. In present study, we have demonstrated role played by JEV in modulation of neuronal pyruvate dehydrogenase kinase 1 (PDK1) abundance and its effect upon neuronal health. Infection of neuron by JEV culminates into upregulation of PDK1 abundance. Albeit inhibition of JEV-induced PDK1-upregulation was accompanied by enhanced JEV propagation in neurons, abrogation of PDK1-upregulation was demonstrated to ameliorate neuronal apoptosis. PDK1 inhibition-associated reduction in neuronal death was observed to be associated with reduced generation of reactive oxygen species (ROS) in neurons. Our study hence provides a possible therapeutic target which upon modulation might help combat JEV infection-associated neuronal apoptosis via restoration of JEV-associated ROS generation.
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  • 文章类型: Journal Article
    未经证实:止血带诱导的缺血和再灌注(I/R)通过涉及蛋白质合成/分解的机制与术后肌肉萎缩有关,细胞代谢,线粒体功能障碍,和凋亡。缺血预处理(IPC)可以保护骨骼肌免受I/R损伤。这项研究旨在确定IPC的潜在机制及其对全膝关节置换术(TKA)后肌肉力量的影响。
    未经证实:24名TKA患者随机接受假IPC或IPC(3个周期的5分钟缺血,然后5分钟再灌注)。在止血带(TQ)充气和再灌注开始后30分钟收集横肌活检。蛋白质印迹分析在肌肉蛋白中进行4-HNE,SOD2,TNF-α,IL-6,p-Drp1ser616,Drp1,Mfn1,Mfn2,Opa1,PGC-1,ETC复杂I-V,细胞色素c,切割的胱天蛋白酶-3和胱天蛋白酶-3。术前和术后评估临床结果,包括等速肌力和生活质量。
    UNASSIGNED:IPC显着增加Mfn2(2.0±0.2vs1.2±0.1,p=0.001)和Opa1(2.9±0.3vs1.9±0.2,p=0.005)在再灌注开始时的蛋白质表达,与缺血期相比。4-HNE没有差异,SOD2,TNF-α,IL-6,p-Drp1ser616/Drp1,Mfn1,PGC-1α,ETC复杂I-V,细胞色素c,缺血和再灌注期之间caspase-3/caspase-3的表达,或群体之间。临床上,假IPC组术后膝关节伸展最大扭矩显著降低(-16.6[-29.5,-3.6]N.m,p​=​0.020),而IPC组中的保留(-4.7[-25.3,16.0]N.m,p​=​0.617)。
    未经评估:在带有TQ应用程序的TKA中,IPC保留了术后股四头肌的力量,并部分通过增强骨骼肌中的线粒体融合蛋白来防止TQ引起的I/R损伤。
    UASSIGNED:线粒体融合是IPC预防骨骼肌I/R损伤的潜在潜在潜在机制。在TQ诱导的I/R之前应用IPC保留了TKA术后股四头肌肌力。
    UNASSIGNED: Tourniquet-induced ischemia and reperfusion (I/R) has been related to postoperative muscle atrophy through mechanisms involving protein synthesis/breakdown, cellular metabolism, mitochondrial dysfunction, and apoptosis. Ischemic preconditioning (IPC) could protect skeletal muscle against I/R injury. This study aims to determine the underlying mechanisms of IPC and its effect on muscle strength after total knee arthroplasty (TKA).
    UNASSIGNED: Twenty-four TKA patients were randomized to receive either sham IPC or IPC (3 cycles of 5-min ischemia followed by 5-min reperfusion). Vastus medialis muscle biopsies were collected at 30 ​min after tourniquet (TQ) inflation and the onset of reperfusion. Western blot analysis was performed in muscle protein for 4-HNE, SOD2, TNF-ɑ, IL-6, p-Drp1ser616, Drp1, Mfn1, Mfn2, Opa1, PGC-1ɑ, ETC complex I-V, cytochrome c, cleaved caspase-3, and caspase-3. Clinical outcomes including isokinetic muscle strength and quality of life were evaluated pre- and postoperatively.
    UNASSIGNED: IPC significantly increased Mfn2 (2.0 ​± ​0.2 vs 1.2 ​± ​0.1, p ​= ​0.001) and Opa1 (2.9 ​± ​0.3 vs 1.9 ​± ​0.2, p ​= ​0.005) proteins expression at the onset of reperfusion, compared to the ischemic phase. There were no differences in 4-HNE, SOD2, TNF-ɑ, IL-6, p-Drp1ser616/Drp1, Mfn1, PGC-1ɑ, ETC complex I-V, cytochrome c, and cleaved caspase-3/caspase-3 expression between the ischemic and reperfusion periods, or between the groups. Clinically, postoperative peak torque for knee extension significantly reduced in the sham IPC group (-16.6 [-29.5, -3.6] N.m, p ​= ​0.020), while that in the IPC group was preserved (-4.7 [-25.3, 16.0] N.m, p ​= ​0.617).
    UNASSIGNED: In TKA with TQ application, IPC preserved postoperative quadriceps strength and prevented TQ-induced I/R injury partly by enhancing mitochondrial fusion proteins in the skeletal muscle.
    UNASSIGNED: Mitochondrial fusion is a potential underlying mechanism of IPC in preventing skeletal muscle I/R injury. IPC applied before TQ-induced I/R preserved postoperative quadriceps muscle strength after TKA.
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  • 文章类型: Journal Article
    心血管疾病是死亡的主要原因,血管损伤,心血管疾病的共同病理基础,与巨噬细胞凋亡和炎症反应密切相关。金雀异黄素,一种植物雌激素,发挥心血管保护作用,但是潜在的机制尚未完全阐明。在这项研究中,RAW264.7细胞用金雀异黄素处理,脂多糖(LPS),核因子-κB(NF-κB)抑制剂,和/或蛋白激酶B(AKT)激动剂,以确定染料木素在LPS刺激的细胞凋亡和炎症中的作用。同时,高脂饮食喂养的C57BL/6小鼠给予金雀异黄素以评价金雀异黄素对LPS诱导的心血管损伤小鼠模型的作用。这里,我们证明LPS通过促进miR-21的表达显著增加巨噬细胞的凋亡抵抗和炎症反应,miR-21通过靶向编码区下调肿瘤坏死因子-α诱导的蛋白8样2(TIPE2)表达。金雀异黄素通过抑制NF-κB降低miR-21表达,然后阻断Toll样受体4(TLR4)通路和依赖于TIPE2的AKT磷酸化,从而抑制LPS。我们的研究提示miR-21/TIPE2通路参与M1巨噬细胞凋亡和炎症反应,金雀异黄素通过NF-κB调节Vmp1的启动子区,在表观遗传水平上抑制LPS诱导的心血管损伤的进展。
    Cardiovascular diseases are a major cause of mortality, and vascular injury, a common pathological basis of cardiovascular disease, is deeply correlated with macrophage apoptosis and inflammatory response. Genistein, a type of phytoestrogen, exerts cardiovascular protective activities, but the underlying mechanism has not been fully elucidated. In this study, RAW264.7 cells were treated with genistein, lipopolysaccharide (LPS), nuclear factor-kappa B (NF-κB) inhibitor, and/or protein kinase B (AKT) agonist to determine the role of genistein in apoptosis and inflammation in LPS-stimulated cells. Simultaneously, high fat diet-fed C57BL/6 mice were administered genistein to evaluate the function of genistein on LPS-induced cardiovascular injury mouse model. Here, we demonstrated that LPS obviously increased apoptosis resistance and inflammatory response of macrophages by promoting miR-21 expression, and miR-21 downregulated tumor necrosis factor-α-induced protein 8-like 2 (TIPE2) expression by targeting the coding region. Genistein reduced miR-21 expression by inhibiting NF-κB, then blocked toll-like receptor 4 (TLR4) pathway and AKT phosphorylation dependent on TIPE2, resulting in inhibition of LPS. Our research suggests that miR-21/TIPE2 pathway is involved in M1 macrophage apoptosis and inflammatory response, and genistein inhibits the progression of LPS-induced cardiovascular injury at the epigenetic level via regulating the promoter region of Vmp1 by NF-κB.
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  • 文章类型: Journal Article
    糖尿病肾病(DN)是糖尿病的严重并发症,是终末期肾病的主要病因,这给全世界的人类社会造成了严重的健康问题和巨大的经济负担。常规战略,如肾素-血管紧张素-醛固酮系统阻断,血糖水平控制,和减轻体重,在许多DN管理的临床实践中,可能无法获得令人满意的结果。值得注意的是,由于多目标函数,中药作为DN治疗的主要或替代疗法具有很好的临床益处。越来越多的研究强调确定中药的生物活性化合物和肾脏保护作用的分子机制。参与糖/脂代谢调节的信号通路,抗氧化,抗炎,抗纤维化,足细胞保护已被确定为重要的作用机制。在这里,在回顾临床试验结果后,我们总结了中药及其生物活性成分在治疗和管理DN中的临床疗效,系统评价,和荟萃分析,对动物和细胞实验中报道的相关潜在机制和分子靶标进行了彻底讨论。我们旨在全面了解中药对DN的保护作用。
    Diabetic nephropathy (DN) has been recognized as a severe complication of diabetes mellitus and a dominant pathogeny of end-stage kidney disease, which causes serious health problems and great financial burden to human society worldwide. Conventional strategies, such as renin-angiotensin-aldosterone system blockade, blood glucose level control, and bodyweight reduction, may not achieve satisfactory outcomes in many clinical practices for DN management. Notably, due to the multi-target function, Chinese medicine possesses promising clinical benefits as primary or alternative therapies for DN treatment. Increasing studies have emphasized identifying bioactive compounds and molecular mechanisms of reno-protective effects of Chinese medicines. Signaling pathways involved in glucose/lipid metabolism regulation, antioxidation, anti-inflammation, anti-fibrosis, and podocyte protection have been identified as crucial mechanisms of action. Herein, we summarize the clinical efficacies of Chinese medicines and their bioactive components in treating and managing DN after reviewing the results demonstrated in clinical trials, systematic reviews, and meta-analyses, with a thorough discussion on the relative underlying mechanisms and molecular targets reported in animal and cellular experiments. We aim to provide comprehensive insights into the protective effects of Chinese medicines against DN.
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  • 文章类型: Journal Article
    目前尚无有效的治疗方法可通过使用原发性经皮冠状动脉介入治疗增强早期再灌注治疗来减少梗死面积并改善急性心肌梗死后的临床预后。研究表明,京都大学物质121(KUS121)降低了内质网应激,维持三磷酸腺苷水平,并改善小鼠心脏缺血再灌注损伤模型的梗死面积。该研究证实了KUS121在猪缺血再灌注损伤模型中的心脏保护作用。这些发现证实,KUS121是一种有前途的新型心肌梗死治疗剂,可与直接经皮冠状动脉介入治疗结合使用。
    No effective treatment is yet available to reduce infarct size and improve clinical outcomes after acute myocardial infarction by enhancing early reperfusion therapy using primary percutaneous coronary intervention. The study showed that Kyoto University Substance 121 (KUS121) reduced endoplasmic reticulum stress, maintained adenosine triphosphate levels, and ameliorated the infarct size in a murine cardiac ischemia and reperfusion injury model. The study confirmed the cardioprotective effect of KUS121 in a porcine ischemia and reperfusion injury model. These findings confirmed that KUS121 is a promising novel therapeutic agent for myocardial infarction in conjunction with primary percutaneous coronary intervention.
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  • 文章类型: Journal Article
    Paclitaxel (Px) is an effective chemotherapeutic agent for the treatment of various cancers. However, it is often associated with neurological side effects, including chemotherapy-associated cognitive impairment (CACI), such as \"chemobrain\". Previously, we reported that endoplasmic reticulum (ER) stress is involved in Px-induced neurotoxicity, and immunoglobulin heavy chain binding protein (BiP) inducer X (BIX) alleviates Px-induced neurotoxicity. However, BIX has not been used in clinical practice yet. We recently reported that fluvoxamine (Flv) alleviates ER stress via induction of sigma-1 receptor (Sig-1R). The purpose of this study was to investigate whether Flv could alleviate Px-induced neurotoxicity in vitro. SK-N-SH cells were pre-treated for 12 h with or without 10 μg/ml Flv followed by treatment with 1 μM Px with or without co-existence of 10 μg/ml Flv for 24 h. To investigate the involvement of Sig-1R in alleviation effect on Px-induced neurotoxicity,1 μM NE100, an antagonist of Sig-1R, was added for 24 h. Neurotoxicity was assessed using the MTS viability assay and ER stress-mediated neurotoxicity was assessed by evaluating the expression of C/EBP homologous protein (CHOP), cleaved caspase 4, and cleaved caspase 3. Pre-treatment with Flv significantly alleviated the induction of CHOP, cleaved caspase 4, and cleaved caspase 3 in SK-N-SH cells. At the same time, pre-treatment with Flv significantly induced Sig-1R in SK-N-SH cells. In addition, viability was significantly higher in Flv-treated cells than in untreated cells, which was reversed by treatment with NE100. Our results suggest that Flv alleviates Px-induced neurotoxicity in part through the induction of Sig-1R. Our findings should contribute to one of the novel approaches for the alleviation of Px-induced neurotoxicity, including chemobrain.
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  • 文章类型: Journal Article
    胰腺β细胞功能障碍和死亡在大多数(如果不是所有形式的)糖尿病的发病机理中是中心的。了解β细胞衰竭的分子机制对于开发β细胞保护方法很重要。
    在这里,我们回顾了内质网应激和内质网应激信号失调在单基因和多基因形式的糖尿病β细胞衰竭中的作用。有大量证据表明1型和2型糖尿病中β细胞存在内质网应激。越来越多的单基因形式的糖尿病提供了这种应激反应重要性的直接证据。特别是,未折叠蛋白反应的PERK分支中的突变提供了对人β细胞功能和存活的重要性的见解.回顾了从不同啮齿动物模型中获得的知识。更多与疾病和患者相关的模型,利用人诱导多能干细胞分化为β细胞,将进一步推进我们对致病机制的理解。最后,我们综述了内质网应激和β细胞信号传导的治疗调节。
    胰腺β细胞对过度内质网应激和eIF2α磷酸化失调敏感,如转录组数据所示,单基因形式的糖尿病和药理学研究。在设计糖尿病的新治疗方法时,应考虑到这一点。
    Pancreatic β cell dysfunction and death are central in the pathogenesis of most if not all forms of diabetes. Understanding the molecular mechanisms underlying β cell failure is important to develop β cell protective approaches.
    Here we review the role of endoplasmic reticulum stress and dysregulated endoplasmic reticulum stress signaling in β cell failure in monogenic and polygenic forms of diabetes. There is substantial evidence for the presence of endoplasmic reticulum stress in β cells in type 1 and type 2 diabetes. Direct evidence for the importance of this stress response is provided by an increasing number of monogenic forms of diabetes. In particular, mutations in the PERK branch of the unfolded protein response provide insight into its importance for human β cell function and survival. The knowledge gained from different rodent models is reviewed. More disease- and patient-relevant models, using human induced pluripotent stem cells differentiated into β cells, will further advance our understanding of pathogenic mechanisms. Finally, we review the therapeutic modulation of endoplasmic reticulum stress and signaling in β cells.
    Pancreatic β cells are sensitive to excessive endoplasmic reticulum stress and dysregulated eIF2α phosphorylation, as indicated by transcriptome data, monogenic forms of diabetes and pharmacological studies. This should be taken into consideration when devising new therapeutic approaches for diabetes.
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  • 文章类型: Journal Article
    内质网应激与多种心血管疾病有关。然而,其病理生理相关性和内皮细胞缺氧/复氧(H/R)背景下的潜在机制尚未完全了解。先前的研究结果表明,乙酰胆碱(ACH),主要的迷走神经神经递质,通过激活AMP激活的蛋白激酶(AMPK)保护心肌细胞免受损伤。这项研究调查了ER应激在H/R过程中在内皮细胞中的作用,并探讨了ACh的有益作用。我们的结果表明,H/R触发了内皮细胞的内质网应激和凋亡,葡萄糖调节蛋白78,caspase-12切割和C/EBP同源蛋白表达的升高证明了这一点。ACh显著降低了ER应激和末端脱氧核苷酸转移酶介导的dUTP-生物素缺口末端标记阳性细胞,并恢复了H/R诱导的ER超微结构变化,可能通过蛋白激酶样内质网激酶和要求肌醇激酶1途径。此外,4-二苯基乙酰氧基-N-甲基哌啶甲基碘,3型毒蕈碱ACh受体(M3AChR)抑制剂,在H/R期间消除了ACh介导的AMPK磷酸化增加。此外,M3AChR或AMPKsiRNA消除了ACh引起的内皮细胞内质网应激的减弱,表明ACh的有益作用可能是由M3AChR-AMPK信号介导的。总的来说,ACh通过M3AChR激活AMPK,从而抑制H/R诱导的ER应激和内皮细胞凋亡。我们首次提出,在H/R期间,AMPK可能是M3AChR刺激和ER应激相关凋亡途径抑制之间必不可少的中间步骤,这可能有助于开发针对ER应激的新治疗方法,以预防或减轻缺血/再灌注损伤。
    Endoplasmic reticulum (ER) stress is associated with various cardiovascular diseases. However, its pathophysiological relevance and the underlying mechanisms in the context of hypoxia/reoxygenation (H/R) in endothelial cells are not fully understood. Previous findings have suggested that acetylcholine (ACh), the major vagal nerve neurotransmitter, protected against cardiomyocyte injury by activating AMP-activated protein kinase (AMPK). This study investigated the role of ER stress in endothelial cells during H/R and explored the beneficial effects of ACh. Our results showed that H/R triggered ER stress and apoptosis in endothelial cells, evidenced by the elevation of glucose-regulated protein 78, cleaved caspase-12 and C/EBP homologous protein expression. ACh significantly decreased ER stress and terminal deoxynucleotidyl transferase mediated dUTP-biotin nick end labeling positive cells and restored ER ultrastructural changes induced by H/R, possibly via protein kinase-like ER kinase and inositol-requiring kinase 1 pathways. Additionally, 4-diphenylacetoxy-N-methylpiperidine methiodide, a type-3 muscarinic ACh receptor (M3 AChR) inhibitor, abolished ACh-mediated increase in AMPK phosphorylation during H/R. Furthermore, M3 AChR or AMPK siRNA abrogated the ACh-elicited the attenuation of ER stress in endothelial cells, indicating that the salutary effects of ACh were likely mediated by M3 AChR-AMPK signaling. Overall, ACh activated AMPK through M3 AChR, thereby inhibited H/R-induced ER stress and apoptosis in endothelial cells. We have suggested for the first time that AMPK may function as an essential intermediate step between M3 AChR stimulation and inhibition of ER stress-associated apoptotic pathway during H/R, which may help to develop novel therapeutic approaches targeting ER stress to prevent or alleviate ischemia/reperfusion injury.
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  • 文章类型: Journal Article
    压力调节一组重要的生理功能和疾病状态。肾上腺素在威胁稳态的压力下产生。硫氧还蛋白-1(Trx-1)是一种氧化还原调节蛋白,被诱导抵抗压力并与各种疾病有关。因此,重要的是要检查Trx-1是否由肾上腺素诱导,并了解Trx-1调节肾上腺素应激的潜在分子机制。这里,我们显示肾上腺素通过β-肾上腺素受体/环AMP/蛋白激酶A(PKA)信号通路诱导PC12细胞中Trx-1的表达。siRNA对Trx-1的下调加剧了γ-H2AX的积累,并进一步降低了肾上腺素对p53的表达。因此,Trx-1过表达减轻了γ-H2AX的积累,恢复了p53和C/EBP同源蛋白(CHOP)在皮质中的表达,小鼠的海马和胸腺。此外,Trx-1过表达降低了肾上腺素的丙二醛浓度。我们进一步探讨了Trx-1对p53和γ-H2AX的调控机制。我们发现Trx-1的过表达通过与β-抑制蛋白-1的相互作用抑制了β-抑制蛋白-1的表达。因此,β-抑制蛋白-1的下调抑制了细胞活力以及γ-H2AX和cyclinD1的表达,并增加了p53的表达。一起来看,我们的数据表明,Trx-1/β-抑制蛋白-1相互作用可能代表了一种新的抗应激内源性机制.
    Stress regulates a panel of important physiological functions and disease states. Epinephrine is produced under stresses threaten to homeostasis. Thioredoxin-1(Trx-1) is a redox regulating protein which is induced to resist stresses and related with various diseases. Thus, it is important to examine whether Trx-1 is induced by epinephrine and to understand the underlying molecular mechanisms that Trx-1 modulates epinephrine stress. Here, we show that the expression of Trx-1 was induced by epinephrine via β-adrenergic receptor/Cyclic AMP/protein kinase A (PKA) signaling pathway in PC12 cells. The down-regulation of Trx-1 by siRNA aggravated accumulation of γ-H2AX and further decreased expression of p53 by epinephrine. Accordingly, Trx-1 overexpression alleviated accumulation of γ-H2AX and restored the expressions of p53 and C/EBP homologous protein (CHOP) in the cortex, hippocampus and thymus of mice. Moreover, Trx-1 overexpression reduced the malondialdehyde concentration by epinephrine. We further explored the mechanism on p53 and γ-H2AX regulated by Trx-1. We found that overexpression of Trx-1 suppressed β-arrestin-1 expression through interaction with β-arrestin-1. Consequently, the downregulation of β-arrestin-1 suppressed the cell viability and the expressions of γ-H2AX and cyclin D1, and increased p53 expression. Taken together, our data suggest that Trx-1/β-arrestin-1 interaction may represent a novel endogenous mechanism on protecting against stress.
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