Repressor Proteins

抑制蛋白
  • 文章类型: Journal Article
    背景:高危型人乳头瘤病毒(HR-HPV)感染是宫颈癌发生的重要因素。HPV18是仅次于HPV16的第二常见HR-HPV。
    方法:在本研究中,采用MEGA11软件对HPV18E6-E7和L1基因进行变异和系统发育树分析。使用pamlX估计对E6、E7和L1基因的选择压力。此外,通过ABCpred服务器和IEDB网站预测了HPV18中L1氨基酸序列的B细胞表位和E6-E7氨基酸序列的T细胞表位,分别。
    结果:在E6-E7序列中共发现了9个单核苷酸变体,其中2个为非同义变体,7个为同义变体.在L1序列中鉴定出20个单核苷酸变体,包括11个非同义变体和9个同义变体。系统发育分析表明,E6-E7和L1序列均分布在A系。在HPV18E6、E7和L1序列中,未发现阳性选择位点.L1中的非保守取代R545C影响了假设的B细胞表位。两个非保守替换,E6中的S82A和E7中的R53Q影响多个假设的T细胞表位。
    结论:HPV18的序列变异数据可能为病毒诊断奠定基础。中国中部宫颈癌的进一步研究和疫苗设计。
    BACKGROUND: High-risk human papillomavirus (HR-HPV) infection is an important factor for the development of cervical cancer. HPV18 is the second most common HR-HPV after HPV16.
    METHODS: In this study, MEGA11 software was used to analyze the variation and phylogenetic tree of HPV18 E6-E7 and L1 genes. The selective pressure to E6, E7 and L1 genes was estimated using pamlX. In addition, the B cell epitopes of L1 amino acid sequences and T cell epitopes of E6-E7 amino acid sequences in HPV18 were predicted by ABCpred server and IEDB website, respectively.
    RESULTS: A total of 9 single nucleotide variants were found in E6-E7 sequences, of which 2 were nonsynonymous variants and 7 were synonymous variants. Twenty single nucleotide variants were identified in L1 sequence, including 11 nonsynonymous variants and 9 synonymous variants. Phylogenetic analysis showed that E6-E7 and L1 sequences were all distributed in A lineage. In HPV18 E6, E7 and L1 sequences, no positively selected site was found. The nonconservative substitution R545C in L1 affected hypothetical B cell epitope. Two nonconservative substitutions, S82A in E6, and R53Q in E7, impacted multiple hypothetical T cell epitopes.
    CONCLUSIONS: The sequence variation data of HPV18 may lay a foundation for the virus diagnosis, further study of cervical cancer and vaccine design in central China.
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  • 文章类型: Journal Article
    刺猬(Hh)信号,进化上保守的途径,在发育和肿瘤发生中起着至关重要的作用,使其成为有希望的药物靶标。已知多个负调节器来控制Hh信号;然而,活化平滑(SMO)如何参与下游GLI2和GLI3的活化尚不清楚.在这里,我们确定纤毛激酶DYRK2是GLI2和GLI3转录因子对Hh信号传导的正调节因子.转录组和相互作用组分析表明,DYRK2在纤毛碱基的进化上保守的丝氨酸残基上磷酸化GLI2和GLI3,响应于Hh途径的激活。这种磷酸化诱导GLI2/GLI3从抑制剂解离,SUFU,以及它们向细胞核的易位。小鼠体内Dyrk2的缺失会导致骨骼畸形,但神经管发育仍正常.值得注意的是,DYRK2介导的磷酸化通过控制细胞增殖来协调肢体发育。一起来看,纤毛激酶DYRK2通过调节两个过程来控制Hh信号的激活:SMO和纤毛形成下游的GLI2和GLI3的磷酸化。因此,我们对Hh信号的独特调控机制的发现扩大了对Hh相关疾病控制的认识.
    Hedgehog (Hh) signaling, an evolutionarily conserved pathway, plays an essential role in development and tumorigenesis, making it a promising drug target. Multiple negative regulators are known to govern Hh signaling; however, how activated Smoothened (SMO) participates in the activation of downstream GLI2 and GLI3 remains unclear. Herein, we identified the ciliary kinase DYRK2 as a positive regulator of the GLI2 and GLI3 transcription factors for Hh signaling. Transcriptome and interactome analyses demonstrated that DYRK2 phosphorylates GLI2 and GLI3 on evolutionarily conserved serine residues at the ciliary base, in response to activation of the Hh pathway. This phosphorylation induces the dissociation of GLI2/GLI3 from suppressor, SUFU, and their translocation into the nucleus. Loss of Dyrk2 in mice causes skeletal malformation, but neural tube development remains normal. Notably, DYRK2-mediated phosphorylation orchestrates limb development by controlling cell proliferation. Taken together, the ciliary kinase DYRK2 governs the activation of Hh signaling through the regulation of two processes: phosphorylation of GLI2 and GLI3 downstream of SMO and cilia formation. Thus, our findings of a unique regulatory mechanism of Hh signaling expand understanding of the control of Hh-associated diseases.
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  • 文章类型: Journal Article
    Tirbanibulin1%软膏是一种合成的抗增殖剂,于2021年被欧盟批准用于治疗光化性角化病(AK)。外用替尼布林已经临床解决了HPV-57(+)鳞状细胞癌(SCC),HPV-16(+)外阴高级别鳞状上皮内病变,疣状表皮发育不良,还有尖锐湿疣.我们研究了地尔巴尼布林如何影响HPV癌蛋白的表达,并影响参与细胞增殖和转化的其他细胞途径。我们处理了HeLa细胞系,含有整合的HPV-18,增加剂量的替尔巴尼布林,以确定对细胞增殖的影响。用针对Src经典途径的抗体进行免疫印迹,HPV18E6和E7转录调控,凋亡,以及侵袭和转移途径。用替班尼布林进行的细胞增殖测定确定HeLa细胞的半数最大抑制浓度(IC50)为31.49nmol/L。增加的地尔巴尼布林浓度下调Src的蛋白表达(p<0.001),磷酸-Src(p<0.001),ras(p<0.01),c-Raf(p<0.001),ERK1(p<0.001),磷酸化ERK1(p<0.001),磷酸化ERK2(p<0.01),phospho-Mnk1(p<0.001),eIF4E(p<0.01),磷酸-eIF4E(p<0.001),E6(p<0.01),E7(p<0.01),Rb(p<0.01),磷酸-Rb(p<0.001),MDM2(p<0.01),E2F1(p<0.001),磷酸FAK(p<0.001),phospho-p130Cas(p<0.001),Mcl-1(p<0.01),和Bcl-2(p<0.001),但上调CPARP(p<0.001),和cPARP/fPARP(p<0.001)。这些结果证明,替尼布林可通过Src-MEK-途径影响HPV癌蛋白的表达。Tirbanibulin显着下调与细胞周期调节和细胞增殖相关的致癌蛋白,同时上调凋亡途径。
    Tirbanibulin是人类乳头瘤病毒(HPV)相关疾病的有希望的新疗法。Tirbanibulin1%软膏是一种经批准的用于治疗光化性角化病(AK)的合成局部软膏,皮肤癌的癌前病变.先前已报道局部使用的替尼布林可在临床上解决人乳头瘤病毒(HPV)-()疾病。在这项研究中,我们研究了替比尼布林如何影响与癌症相关的HPV和通路.我们处理HeLa细胞系以确定对HPV细胞增殖的影响。增加地尼布林的浓度在统计学上显着影响通常与癌症相关的许多细胞途径。这些结果证明,替尼布林可以影响HPV癌蛋白的表达,从而杀死癌细胞。
    Tirbanibulin 1% ointment is a synthetic antiproliferative agent approved in 2021 by the European Union for treating actinic keratoses (AK). Topical tirbanibulin has clinically resolved HPV-57 ( +) squamous cell carcinoma (SCC), HPV-16 ( +) vulvar high-grade squamous intraepithelial lesion, epidermodysplasia verruciformis, and condyloma. We examined how tirbanibulin might affect HPV oncoprotein expression and affect other cellular pathways involved in cell proliferation and transformation. We treated the HeLa cell line, containing integrated HPV-18, with increasing doses of tirbanibulin to determine the effects on cell proliferation. Immunoblotting was performed with antibodies against the Src canonical pathway, HPV 18 E6 and E7 transcription regulation, apoptosis, and invasion and metastasis pathways. Cell proliferation assays with tirbanibulin determined the half-maximal inhibitory concentration (IC50) of HeLa cells to be 31.49 nmol/L. Increasing concentrations of tirbanibulin downregulates the protein expression of Src (p < 0.001), phospho-Src (p < 0.001), Ras (p < 0.01), c-Raf (p < 0.001), ERK1 (p < 0.001), phospho-ERK1 (p < 0.001), phospho-ERK2 (p < 0.01), phospho-Mnk1 (p < 0.001), eIF4E (p < 0.01), phospho-eIF4E (p < 0.001), E6 (p < 0.01), E7 (p < 0.01), Rb (p < 0.01), phospho-Rb (p < 0.001), MDM2 (p < 0.01), E2F1 (p < 0.001), phospho-FAK (p < 0.001), phospho-p130 Cas (p < 0.001), Mcl-1 (p < 0.01), and Bcl-2 (p < 0.001), but upregulates cPARP (p < 0.001), and cPARP/fPARP (p < 0.001). These results demonstrate that tirbanibulin may impact expression of HPV oncoproteins via the Src- MEK- pathway. Tirbanibulin significantly downregulates oncogenic proteins related to cell cycle regulation and cell proliferation while upregulating apoptosis pathways.
    Tirbanibulin is Promising Novel Therapy for Human Papillomavirus (HPV)-associated Diseases.Tirbanibulin 1% ointment is an approved synthetic topical ointment for treating actinic keratoses (AK), a precancer of skin cancer. Topical tirbanibulin has previously been reported to clinically resolve human papillomavirus (HPV)-( +) diseases.In this study, we examine how tirbanibulin may affect the HPV and pathways associated with cancer.We treated the HeLa cell line to determine the effects on HPV cell proliferation. Increasing the concentration of tirbanibulin statistically significantly affected numerous cellular pathways often associated with cancer.These results demonstrate that tirbanibulin may impact expression of HPV oncoproteins and thereby kill cancer cells.
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  • 文章类型: Journal Article
    肥胖通常与低度炎症有关。肥胖的发病率在全球范围内逐年增加,严重影响人类健康。先前的研究表明,长非编码RNASNHG12在肥胖中下调。然而,SNHG12在肥胖中的作用还有待阐明.在这项研究中,qRT-PCR,westernblot,用ELISA检测基因和蛋白的表达。采用流式细胞术研究M2巨噬细胞标志物。利用RNA下拉测定和RIP来确认SNHG12、hnRNPA1和HDAC9的相互作用。最终,建立了高脂肪饮食喂养的小鼠模型进行体内研究.SNHG12过表达抑制了由TNF-α治疗引起的脂肪细胞炎症和胰岛素抵抗,并促进了巨噬细胞的M2极化。SNHG12与hnRNPA1相互作用下调HDAC9表达,激活了Nrf2信号通路。HDAC9过表达逆转了SNHG12过表达对炎症反应的影响,胰岛素抵抗,和M2表型极化。SNHG12的过表达改善了高脂饮食喂养的小鼠组织炎症。这项研究揭示了SNHG12对脂肪细胞炎症和胰岛素抵抗的保护作用。该结果进一步为预防肥胖中的炎症和胰岛素抵抗提供了新的治疗靶点。
    Obesity is often associated with low-grade inflammation. The incidence of obesity has increased annually worldwide, which seriously affects human health. A previous study indicated that long noncoding RNA SNHG12 was downregulated in obesity. Nevertheless, the role of SNHG12 in obesity remains to be elucidated. In this study, qRT-PCR, western blot, and ELISA were utilized to examine the gene and protein expression. Flow cytometry was employed to investigate the M2 macrophage markers. RNA pull-down assay and RIP were utilized to confirm the interactions of SNHG12, hnRNPA1, and HDAC9. Eventually, a high-fat diet-fed mouse model was established for in vivo studies. SNHG12 overexpression suppressed adipocyte inflammation and insulin resistance and promoted M2 polarization of macrophages that was caused by TNF-α treatment. SNHG12 interacted with hnRNPA1 to downregulate HDAC9 expression, which activated the Nrf2 signaling pathway. HDAC9 overexpression reversed the effect of SNHG12 overexpression on inflammatory response, insulin resistance, and M2 phenotype polarization. Overexpression of SNHG12 improved high-fat diet-fed mouse tissue inflammation. This study revealed the protective effect of SNHG12 against adipocyte inflammation and insulin resistance. This result further provides a new therapeutic target for preventing inflammation and insulin resistance in obesity.
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  • 文章类型: Journal Article
    卵母细胞体外成熟是辅助生殖技术中的一项技术。与牛体内成熟的卵母细胞相比,数千个基因在体外成熟的中期II(MII)卵母细胞中显示出异常高的表达,老鼠,和人类。对这种现象的潜在机制知之甚少。这里,我们使用poly(A)包容性RNA同种型测序(PAIso-seq)在体内和体外成熟的小鼠和人卵母细胞中分析转录组范围的poly(A)尾巴。我们的结果表明,观察到的母体mRNA丰度的增加是由体外MII卵母细胞的死蛋白化受损引起的。此外,休眠Btg4和Cnot7mRNA的细胞质多腺苷酸化,对去端化机器的关键部件进行编码,在体外MII卵母细胞受损,导致这些死酶机制成分的翻译减少,并随后损害了全局母体mRNA的死酶化。我们的发现强调了受损的母体mRNA去端化是体外MII卵母细胞的明显分子缺陷。
    Oocyte in vitro maturation is a technique in assisted reproductive technology. Thousands of genes show abnormally high expression in in vitro maturated metaphase II (MII) oocytes compared to those matured in vivo in bovines, mice, and humans. The mechanisms underlying this phenomenon are poorly understood. Here, we use poly(A) inclusive RNA isoform sequencing (PAIso-seq) for profiling the transcriptome-wide poly(A) tails in both in vivo and in vitro matured mouse and human oocytes. Our results demonstrate that the observed increase in maternal mRNA abundance is caused by impaired deadenylation in in vitro MII oocytes. Moreover, the cytoplasmic polyadenylation of dormant Btg4 and Cnot7 mRNAs, which encode key components of deadenylation machinery, is impaired in in vitro MII oocytes, contributing to reduced translation of these deadenylase machinery components and subsequently impaired global maternal mRNA deadenylation. Our findings highlight impaired maternal mRNA deadenylation as a distinct molecular defect in in vitro MII oocytes.
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  • 文章类型: Journal Article
    目的: 探讨儿童肾脏透明细胞肉瘤(CCSK)的临床病理学特征、诊断及预后。 方法: 收集首都医科大学附属北京儿童医院及河南省儿童医院2016年1月至2022年6月诊断的46例CCSK,观察其临床特征、组织学形态、免疫组织化学、分子遗传学特征及预后。 结果: 46例患者男性30例,女性16例,发病年龄3个月至11岁(中位年龄3岁),均为单侧,肿瘤最大径4.5~19.0 cm(中位数11 cm);Ⅰ期15例,Ⅱ期26例,Ⅲ期4例,Ⅳ期1例;组织学除经典型外,常混有2~5种组织学亚型。术后25例(54.3%)转移和/或复发,5例死亡,复发时间1~107个月不等(中位数16个月),远处转移部位主要是肺、骨、脑。肿瘤最大径与无进展生存率存在相关性,临床分期与总生存率差异具有统计学意义。免疫组织化学标志物BCOR、Cyclin D1具有高灵敏度;分子病理检测显示89.1%(41/46)存在BCOR基因第15号外显子内部串联重复,2.2%(1/46)YWHAE-NUTM2重排,2.2%(1/46)BCOR-CCNB3基因融合,三者互斥,三者联合检测阳性率达93.5%(43/46)。 结论: CCSK好发于婴幼儿,肿瘤体积和分期与预后相关,组织病理联合免疫组织化学和分子检测可显著提高诊断准确性。.
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  • 文章类型: Journal Article
    除了线粒体DNA,线粒体双链RNA(mtdsRNA)从线粒体输出。然而,RNA转运的特异性通道尚未得到证实。这里,我们开始表征mtdsRNA从线粒体基质输出到细胞质的通道候选物。SUV3的下调导致mtdsRNAs在基质中的积累,而PNPase的下调导致mtdsRNA输出到细胞质。靶向实验表明,PNPase在膜间空间和基质中起作用。双链RNA的链特异性测序证实了线粒体起源。抑制或下调外膜蛋白VDAC1/2和BAK/BAX或内膜蛋白PHB1/2强烈减弱mtdsRNA向细胞质的输出。细胞溶质mtdsRNA随后定位于含有应激蛋白TIA-1的大颗粒并激活1型干扰素应激反应途径。大量的mtdsRNAs在非小细胞肺癌细胞系中检测到,表明与癌症生物学的相关性。因此,我们认为mtdsRNA是一种新的损伤相关分子模式,以调节的方式从线粒体输出。
    In addition to mitochondrial DNA, mitochondrial double-stranded RNA (mtdsRNA) is exported from mitochondria. However, specific channels for RNA transport have not been demonstrated. Here, we begin to characterize channel candidates for mtdsRNA export from the mitochondrial matrix to the cytosol. Down-regulation of SUV3 resulted in the accumulation of mtdsRNAs in the matrix, whereas down-regulation of PNPase resulted in the export of mtdsRNAs to the cytosol. Targeting experiments show that PNPase functions in both the intermembrane space and matrix. Strand-specific sequencing of the double-stranded RNA confirms the mitochondrial origin. Inhibiting or down-regulating outer membrane proteins VDAC1/2 and BAK/BAX or inner membrane proteins PHB1/2 strongly attenuated the export of mtdsRNAs to the cytosol. The cytosolic mtdsRNAs subsequently localized to large granules containing the stress protein TIA-1 and activated the type 1 interferon stress response pathway. Abundant mtdsRNAs were detected in a subset of non-small-cell lung cancer cell lines that were glycolytic, indicating relevance in cancer biology. Thus, we propose that mtdsRNA is a new damage-associated molecular pattern that is exported from mitochondria in a regulated manner.
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  • 文章类型: Journal Article
    背景技术自从下一代测序(NGS)技术变得广泛可用以来,克隆造血(CH)相关基因突变与异基因造血干细胞移植(allo-HSCT)之间的关系已经被广泛研究。然而,研究主要集中在供者CH突变与移植预后的关系,并且缺乏对受体中CH突变与急性移植物抗宿主病(aGVHD)之间关系的研究。材料和方法我们分析了196例接受allo-HSCT的AML患者的NGS结果及其与aGVHD和预后的相关性。结果共有93例(47.4%)患者存在CH突变。最常见的突变基因是DNMT3A(196个中的28个;14.3%),TET2(196人中的22人;11.2%),IDH1(196人中的15人;7.7%),IDH2(196中的14;7.1%),和ASXL1(196个中的13个;6.6%)。在45岁以上有DTA突变的患者中,aGVHD的发生率较高(DNMT3A,TET2或ASXL1)。DNMT3A突变但不具有TET2或ASXL1突变是45岁以上接受allo-HSCT的患者发生aGVHD的独立危险因素。中位随访时间为42.7个月,CH突变与总生存率和无白血病生存率无关。结论DNMT3A突变,但不是TET2或ASXL1突变,与较高的aGVHD发病率相关。
    BACKGROUND The relationship between clonal hematopoiesis (CH)-associated gene mutations and allogeneic hematopoietic stem cell transplantation (allo-HSCT) has been extensively studied since next-generation sequencing (NGS) technology became widely available. However, research has mainly focused on the relationship between donor CH mutations and transplant prognosis, and research into the relationship between CH mutations in the recipient and acute graft-versus-host disease (aGVHD) is lacking. MATERIAL AND METHODS We analyzed NGS results and their correlation with aGVHD and prognosis in 196 AML patients undergoing allo-HSCT. RESULTS A total of 93 (47.4%) patients had CH mutations. The most frequently mutated genes were DNMT3A (28 of 196; 14.3%), TET2 (22 of 196; 11.2%), IDH1 (15 of 196; 7.7%), IDH2 (14 of 196; 7.1%), and ASXL1 (13 of 196; 6.6%). The incidence of aGVHD was higher in patients older than 45 years old with DTA mutations (DNMT3A, TET2 or ASXL1). DNMT3A mutation but not with TET2 or ASXL1 mutation was an independent risk factor for aGVHD in patients receiving allo-HSCT older than 45 years old. With a median follow-up of 42.7 months, CH mutations were not associated with overall survival and leukemia-free survival. CONCLUSIONS DNMT3A mutation, but not TET2 or ASXL1 mutation, was associated with higher incidence of aGVHD.
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  • 文章类型: Journal Article
    ANKRD11(Ankyrin重复结构域11)是一种染色质调节因子和KBG综合征的致病基因,一种罕见的以多器官异常为特征的发育障碍,包括心脏缺陷.然而,ANKRD11在心脏发育中的作用尚不清楚.神经嵴在胚胎心脏发育中起主导作用,它的功能障碍与先天性心脏缺陷有关。我们证明了鼠胚胎神经cast中Ankrd11的条件性敲除会导致持续的动脉干,心室扩张,和心室收缩力受损。我们进一步表明,这些缺陷是由于异常的心脏神经c细胞组织导致流出道分隔失败而发生的。最后,Ankrd11基因敲除导致各种转录因子的表达受损,染色质重塑和信号通路,包括mTOR,心脏神经c细胞中的BMP和TGF-β。在这项工作中,我们确定Ankrd11是神经c介导的心脏发育和功能的调节因子。
    ANKRD11 (Ankyrin Repeat Domain 11) is a chromatin regulator and a causative gene for KBG syndrome, a rare developmental disorder characterized by multiple organ abnormalities, including cardiac defects. However, the role of ANKRD11 in heart development is unknown. The neural crest plays a leading role in embryonic heart development, and its dysfunction is implicated in congenital heart defects. We demonstrate that conditional knockout of Ankrd11 in the murine embryonic neural crest results in persistent truncus arteriosus, ventricular dilation, and impaired ventricular contractility. We further show these defects occur due to aberrant cardiac neural crest cell organization leading to outflow tract septation failure. Lastly, knockout of Ankrd11 in the neural crest leads to impaired expression of various transcription factors, chromatin remodelers and signaling pathways, including mTOR, BMP and TGF-β in the cardiac neural crest cells. In this work, we identify Ankrd11 as a regulator of neural crest-mediated heart development and function.
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  • 文章类型: Journal Article
    长链非编码RNA是癌症生物学中的重要调节因子,并作为肿瘤抑制因子或癌基因发挥作用。它们的失调与肿瘤发生密切相关。LINC00265在肺腺癌中上调,并且是该癌症的预后生物标志物。然而,其在癌症进展中的作用机制仍知之甚少.
    这里,使用肺癌细胞系检查LINC00265在肺腺癌中的调节作用,临床样本,和异种移植。
    我们发现高水平的LINC00265表达与较短的患者总生存率相关,而LINC00265的敲除抑制癌细胞系的增殖和异种移植物中的肿瘤生长。Westernblot和流式细胞术分析表明LINC00265沉默可诱导自噬和凋亡。此外,我们表明LINC00265与转录共阻遏物开关非依赖性3a(SIN3A)相互作用并稳定,它是一种支架蛋白,以依赖环境的方式充当肿瘤抑制因子或癌基因。沉默SIN3A也降低了肺癌细胞的增殖,这与自噬的诱导有关。这些观察结果提高了LINC00265在肺腺癌中促进SIN3A致癌活性的可能性。
    因此,我们的发现将SIN3A确定为LINC00265相关蛋白,并应有助于理解LINC00265介导的肿瘤发生的潜在机制。
    UNASSIGNED: Long non-coding RNAs are important regulators in cancer biology and function either as tumor suppressors or as oncogenes. Their dysregulation has been closely associated with tumorigenesis. LINC00265 is upregulated in lung adenocarcinoma and is a prognostic biomarker of this cancer. However, the mechanism underlying its function in cancer progression remains poorly understood.
    UNASSIGNED: Here, the regulatory role of LINC00265 in lung adenocarcinoma was examined using lung cancer cell lines, clinical samples, and xenografts.
    UNASSIGNED: We found that high levels of LINC00265 expression were associated with shorter overall survival rate of patients, whereas knockdown of LINC00265 inhibited proliferation of cancer cell lines and tumor growth in xenografts. Western blot and flow cytometry analyses indicated that silencing of LINC00265 induced autophagy and apoptosis. Moreover, we showed that LINC00265 interacted with and stabilized the transcriptional co-repressor Switch-independent 3a (SIN3A), which is a scaffold protein functioning either as a tumor repressor or as an oncogene in a context-dependent manner. Silencing of SIN3A also reduced proliferation of lung cancer cells, which was correlated with the induction of autophagy. These observations raise the possibility that LINC00265 functions to promote the oncogenic activity of SIN3A in lung adenocarcinoma.
    UNASSIGNED: Our findings thus identify SIN3A as a LINC00265-associated protein and should help to understand the mechanism underlying LINC00265-mediated oncogenesis.
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