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1.
miR-17-92基因簇编码包括miR-19a、miR-19b在内的至少6个miRNA,在鸡细胞的增殖、分化、凋亡及发育等多种生物学过程中发挥重要作用,但其作用机制尚不清楚。生物信息学分析显示,细胞周期调控子LIN9是 miR-17-92 基因簇成员miR-19a和miR-19b的潜在靶点。为验证这一预测,构建含野生型LIN9 3′-UTR荧光素酶报告基因载体(psi-CHECK2-LIN9-3′-UTR-WT)及突变型报告基因载体(psi-CHECK2-LIN9-3′-UTR-MUT),开展靶标LIN9的鉴定。复合转染结合报告基因酶活性测定结果表明,过表达miR-19a和miR-19b能显著抑制含野生型LIN9 3′-UTR的报告基因表达,而过表达miR-19a和miR-19b抑制剂显著提高野生型LIN9 3′-UTR报告基因的表达。实时定量PCR(RT-qPCR)证明,miR-19a和miR-19b 抑制剂对内源性LIN9 mRNA的表达没有影响,提示miR-19a和miR-19b可能不是通过降解mRNA调控LIN9表达。转染结合CCK-8细胞增殖分析显示,在鸡前脂肪细胞过表达LIN9 明显抑制细胞增殖。与此相一致的是,细胞增殖标志分子CyclinD1、c-Myc、PCNA、Ki67 的mRNA表达量明显降低。本研究证实,LIN9是miR-17-92 基因簇成员miR-19a和miR-19b的靶标,同时证实,LIN9抑制鸡前脂肪细胞的增殖。是否miR-17-92基因簇编码的其它mi-RNA成员也以LIN9为靶标尚不得而知,我室正在研究中。  相似文献   

2.
目的:探讨miR-148a在5-aza诱导人骨髓间充质(hMSCs)成心肌样分化中的表达及miR-148a对hMSCs体外成心肌样分化的生物学作用。方法:免疫荧光检测5-aza诱导hMSCs分化后心肌细胞特异性标志物α-MHC表达水平;qRT-PCR和Western blot分别检测miR-148a和DNMT1在hMSCs成肌样分化中的表达水平。利用Lipofectamine TM 2000将miR-148a mimics和miR-148a inhibitor分别瞬时转染hMSCs,Western blot检测心肌细胞特异性标志物α-MHC的蛋白表达水平。利用生物信息学技术预测miR-148a的靶基因结合位点利用双荧光素酶报告基因系统鉴定其对靶基因3'UTR的结合序列。通过DNMT1 shRNA和miR-148a inhibitors共转到hMSCs中,研究miR-148a在hMSCs成心肌样分化中的调控作用。结果:hMSCs经5-aza诱导分化后,心肌细胞特性标志物α-MHC蛋白水平明显上调。miR-148a在hBMSCs成肌样分化中显著性增加(P<0.01),DNMT1表达水平显著降低。过表达miR-148a能提高hBMSC中心肌细胞特异性标志物α-MHC表达水平,而抑制miR-148a则能降低其水平(P<0.01)。DNMT1沉默可以阻断miR-148a对hMSCs的诱导成肌样分化作用。结论:miR-148a在hMCCs成肌样分化中表达上调,通过靶定和调控DNMT1基因的表达,并对hMSCs心肌向分化具有正向调控作用。  相似文献   

3.
为了探讨miR-148a及己糖激酶2(hexokinase 2,HK2)基因对人乳腺癌细胞糖酵解代谢途径的影响和可能机制,利用实时荧光定量PCR(real-time fluorescent quantitative PCR,qRT-PCR)检测多种乳腺癌细胞系中miR-148a的表达量,从中筛选miR-148a表达量相对较低的乳腺癌细胞系作为研究对象。再通过观察miR-148a表达量的变化对乳腺癌细胞葡萄糖摄取量、乳酸生成量和细胞增殖指标的影响,以探究miR-148a对乳腺癌细胞糖代谢能力的影响。随后,通过TargetScan在线数据库预测miR-148a和HK2基因的靶向关系,再通过双荧光素酶报告实验、Western免疫印迹以及基因回复实验进行验证,以进一步明确miR-148a和HK2在乳腺癌细胞的糖酵解代谢途径中的作用机制。通过qRT-PCR发现miR-148a在多种乳腺癌细胞系表达降低,尤其是在乳腺癌细胞系MDA-MB231中表达量显著降低(P<0.000 1)。过表达miR-148a使MDA-MB231细胞的葡萄糖摄取量、乳酸生成量、细胞增殖指标均显著下降(P<0.01);而抑制miR-148a表达使MDA-MB231细胞葡萄糖摄取量、乳酸生成量、细胞增殖指标均显著上升(P<0.01)。通过TargetScan在线数据库预测得出,miR-148a与HK2基因3′非编码区(3′-untranslated region,3′-UTR)具有部分结合位点;而双荧光素酶报告实验发现miR-148a与野生型HK2基因的3′-UTR荧光素酶报告载体结合,不与突变型HK2基因的3′-UTR结合。Western免疫印迹检测结果表明,过表达miR-148a使MDA-MB231细胞中HK2蛋白表达量显著下降(P<0.000 1),而抑制miR-148a表达则促进HK2蛋白表达量显著上升(P<0.05)。基因回复实验显示,过表达HK2基因使MDA-MB231乳腺癌细胞的葡萄糖摄取量、乳酸生成量、细胞增殖指标显著上升(P<0.01);将过表达miR-148a载体与过表达HK2载体共转染MDA-MB231细胞,miR-148a逆转了HK2所致的葡萄糖摄取量增加和乳酸生成量上升,并抑制细胞增殖。因此,研究提示,miR-148a可通过靶向抑制HK2基因表达而抑制乳腺癌细胞MDA-MB231糖酵解代谢和细胞增殖。  相似文献   

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MicroRNAs (miRNAs) 是一类长度约为22 nt的非编码的调控性小RNA,它们在诸多的生命活动中发挥重要作用,如参与调控细胞的增殖、分化、凋亡以及肿瘤的发生发展. MicroRNA-449a/b (miR 449a/b) 是脊椎动物中进化保守的miRNA,作为抑癌基因,参与了许多癌症的发生过程,但其在结肠癌中的作用尚不清楚. 本文利用实时荧光定量技术研究了miR-449a/b在结肠癌组织中的表达. 利用双荧光素酶报告基因检测系统及Western印迹鉴定miR-449a/b的靶基因. 应用MTS法和Transwell分别检测miR-449a/b对结肠癌细胞增殖和迁移的影响. 检测组蛋白乙酰化酶抑制剂曲古菌素A (trichostatin A, TSA) 对结肠癌细胞中miR-449a/b表达的影响. 研究结果表明:与正常结肠组织相比,miR-449a/b在结肠癌组织中低表达;miR 449a/b能够结合到FRA-1 mRNA 3′-非翻译区 (3′-untranslated region, 3′-UTR),从而抑制结肠癌细胞HCT116内源Fra 1的表达;外源转染miR-449a/b明显抑制结肠癌细胞HCT116的增殖和迁移;并且TSA处理能够诱导结肠癌细胞HCT116中miR-449a/b的表达. 以上结果提示: miR-449a/b可能通过抑制靶基因Fra-1的表达,进而抑制结肠癌细胞的增殖和迁移.  相似文献   

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miRNA是在许多生物过程中都起着至关重要作用的一类内源性非编码的小RNA,与癌症、肿瘤的发生有关。现发现很多miRNA在黑色素生成中都有重要的调控作用,但miR-146a是否对黑色素的生成具有影响未见报道。本研究发现miR-146a通过靶向抑制酪氨酸酶相关蛋白1(tyrosinase related protein 1,TYRP1)的表达而使黑色素生成降低。在小鼠黑色素细胞中分别转染miR-146a mimic和miR-146a抑制剂,通过qRT-PCR与Western印迹分析比较各实验组中TYRP1基因与酪氨酸家族相关基因酪氨酸酶(tyrosinase,TYR)、酪氨酸酶相关蛋白2(tyrosinase related protein 2,TYRP2)的表达差异。双荧光报告实验验证TYRP1与miR-146a的靶向关系,双荧光酶活性结果显示,实验组相比对照组,荧光素酶活性明显降低,说明TYRP1是miR-146a的靶基因之一;qRT-PCR和Western印迹结果显示实验组TYR、TYRP1及TYRP2在mRNA水平和蛋白质水平表达均显著降低;紫外分光光度法检测黑色素含量,结果显示miR-146a mimic转染组黑色素含量明显下降,而抑制组的黑色素含量呈上升趋势。综上所述,miR-146a通过靶向抑制TYRP1基因的表达,而影响TYR家族成员的表达,调控黑色素的生物合成。  相似文献   

7.
miRNA是在许多生物过程中都起着至关重要作用的一类内源性非编码的小RNA,与癌症、肿瘤的发生有关。现发现很多miRNA在黑色素生成中都有重要的调控作用,但miR-146a是否对黑色素的生成具有影响未见报道。本研究发现miR-146a通过靶向抑制酪氨酸酶相关蛋白1(tyrosinase related protein 1,TYRP1)的表达而使黑色素生成降低。在小鼠黑色素细胞中分别转染miR-146a mimic和miR-146a 抑制剂,通过qRT-PCR与Western印迹分析比较各实验组中TYRP1基因与酪氨酸家族相关基因酪氨酸酶(tyrosinase, TYR)、酪氨酸酶相关蛋白2(tyrosinase related protein 2, TYRP2)的表达差异。双荧光报告实验验证TYRP1与miR-146a的靶向关系,双荧光酶活性结果显示,实验组相比对照组,荧光素酶活性明显降低,说明TYRP1是miR-146a的靶基因之一;qRT-PCR和Western印迹结果显示实验组TYR、TYRP1及TYRP2 在mRNA水平和蛋白质水平表达均显著降低;紫外分光光度法检测黑色素含量,结果显示miR-146a mimic转染组黑色素含量明显下降,而抑制组的黑色素含量呈上升趋势。综上所述,miR-146a通过靶向抑制TYRP1基因的表达,而影响TYR家族成员的表达,调控黑色素的生物合成。  相似文献   

8.
过氧化物酶体增殖活化受体γ辅助活化因子1α(α subunit of peroxisome proliferators activated receptor γ coactivator 1,PGC-1α)是过氧化物酶体增殖活化受体γ辅助活化因子1 (PGC 1)的成员之一. PGC-1α是与能量代谢 关系密切的1个转录辅助活化因子,在线粒体合成、调节适应性产热、骨骼肌纤维类型转换等过程中发挥重要作用.同时,还 参与到糖代谢、脂代谢中,已成为治疗糖尿病、肥胖等代谢疾病的新靶点.近年来还发现, PGC-1α对治疗癌症发生及神经 变性疾病有一定作用.本文主要从PGC-1α调节适应性产热、促进线粒体合成、在骨骼肌中调节纤维类型转换及葡萄糖代谢 等方面对其生理功能进行阐述,并对 PGC-1α与相关代谢疾病的关系进行了总结.  相似文献   

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吞噬和细胞活力蛋白1(engulfment and cell motility protein 1,ELMO1)可以促进多种癌细胞的侵袭和转移,但ELMO1的表达是否受miRNA的调控鲜有研究。本研究旨在探讨miR-145与ELMO1表达的相关性,以及miR-145通过结合ELMO1的mRNA对乳腺癌侵袭的影响。通过TargetScan (http://www.targetscan.org/)靶基因预测软件预测与ELMO1的3′UTR结合的miR-145。荧光素酶结果证实两者互补结合。Transwell侵袭结果显示,miR-145组和siELMO1+miR-145组MDA-231乳腺癌细胞穿膜数较对照组分别降低40%(P<0.05)和79%(P<0.05)。siELMO1+miR-145组和siELMO1组细胞穿膜数则无显著差异(P>0.05)。结果提示,miR-145通过与ELMO1的mRNA结合抑制细胞侵袭。qRT-PCR显示,低侵袭的MCF-7乳腺癌细胞miR-145的表达量较高侵袭的MDA-435细胞高80%(P<0.05),较MDA-231乳腺癌细胞高75%(P<0.05),即miR-145与癌细胞侵袭能力呈负相关。Western印迹结果表明,miR-145组ELMO1表达量低于阴性对照组,miR-145 抑制组ELMO1表达量高于抑制剂NC组(P<0.05),证明miR-145抑制ELMO1的表达。qRT-PCR显示,过表达miR-145后ELMO1 mRNA含量与对照组无显著差异(P>0.05)。结果提示,miR-145对ELMO1的调控作用通过抑制其翻译实现。F-肌动蛋白聚合实验表明,miR-145组和阴性对照组于20 s和60 s时F-肌动蛋白聚合结果存在明显区别(P<0.05)。Western 印迹结果表明,miR-145组活化的Rac1表达量较阴性对照组降低60%(P<0.05),抑制剂NC组活化的Rac1较miR-145 抑制组降低55%(P<0.05);miR-145组磷酸化的整合素β1较对照组于15 min时降低42%(P<0.05),于30 min时降低31%(P<0.05)。由此得出的miR-145过表达显著促进乳腺癌细胞F-肌动蛋白聚合、Rac1活化和整合素β1磷酸化结论。综上所述,miR-145通过靶向ELMO1的 mRNA抑制ELMO1翻译,从而抑制乳腺癌的侵袭。  相似文献   

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吞噬和细胞活力蛋白1(engulfment and cell motility protein 1,ELMO1)可以促进多种癌细胞的侵袭和转移,但ELMO1的表达是否受miRNA的调控鲜有研究。本研究旨在探讨miR-145与ELMO1表达的相关性,以及miR-145通过结合ELMO1的mRNA对乳腺癌侵袭的影响。通过TargetScan (http://www.targetscan.org/)靶基因预测软件预测与ELMO1的3′UTR结合的miR-145。荧光素酶结果证实两者互补结合。Transwell侵袭结果显示,miR-145组和siELMO1+miR-145组MDA-231乳腺癌细胞穿膜数较对照组分别降低40%(P<0.05)和79%(P<0.05)。siELMO1+miR-145组和siELMO1组细胞穿膜数则无显著差异(P>0.05)。结果提示,miR-145通过与ELMO1的mRNA结合抑制细胞侵袭。qRT-PCR显示,低侵袭的MCF-7乳腺癌细胞miR-145的表达量较高侵袭的MDA-435细胞高80%(P<0.05),较MDA-231乳腺癌细胞高75%(P<0.05),即miR-145与癌细胞侵袭能力呈负相关。Western印迹结果表明,miR-145组ELMO1表达量低于阴性对照组,miR-145 抑制组ELMO1表达量高于抑制剂NC组(P<0.05),证明miR-145抑制ELMO1的表达。qRT-PCR显示,过表达miR-145后ELMO1 mRNA含量与对照组无显著差异(P>0.05)。结果提示,miR-145对ELMO1的调控作用通过抑制其翻译实现。F-肌动蛋白聚合实验表明,miR-145组和阴性对照组于20 s和60 s时F-肌动蛋白聚合结果存在明显区别(P<0.05)。Western 印迹结果表明,miR-145组活化的Rac1表达量较阴性对照组降低60%(P<0.05),抑制剂NC组活化的Rac1较miR-145 抑制组降低55%(P<0.05);miR-145组磷酸化的整合素β1较对照组于15 min时降低42%(P<0.05),于30 min时降低31%(P<0.05)。由此得出的miR-145过表达显著促进乳腺癌细胞F-肌动蛋白聚合、Rac1活化和整合素β1磷酸化结论。综上所述,miR-145通过靶向ELMO1的 mRNA抑制ELMO1翻译,从而抑制乳腺癌的侵袭。  相似文献   

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Brown fat generates heat through uncoupled respiration, protecting against hypothermia and obesity. Adult humans have brown fat, but the amounts and activities are substantially decreased in obesity, by unknown mechanisms. Here we show that elevated microRNA 34a (miR-34a) in obesity inhibits fat browning in part by suppressing the browning activators fibroblast growth factor 21 (FGF21) and SIRT1. Lentivirus-mediated downregulation of miR-34a in mice with diet-induced obesity reduced adiposity, improved serum profiles, increased the mitochondrial DNA copy number, and increased oxidative function in adipose tissue in both BALB/c and C57BL/6 mice. Remarkably, downregulation of miR-34a increased coexpression of the beige fat-specific marker CD137 and the browning marker UCP1 in all types of white fat, including visceral fat, and promoted additional browning in brown fat. Mechanistically, downregulation of miR-34a increased expression of the FGF21 receptor components, FGFR1 and βKL, and also that of SIRT1, resulting in FGF21/SIRT1-dependent deacetylation of PGC-1α and induction of the browning genes Ucp1, Pgc-1α, and Prdm16. Importantly, anti-miR-34a-mediated beneficial effects, including decreased adiposity, are likely from multiple tissues, since downregulation of miR-34a also improves hepatic FGF21 signaling and lipid oxidation. This study identifies miR-34a as an inhibitor of beige and brown fat formation, providing a potential target for treating obesity-related diseases.  相似文献   

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MicroRNAs have been shown to play an important role in insulin signaling but their biological function in insulin resistance induced by saturated fatty acids (SFA) remains largely unknown. Here, we report that SFA palmitate and high fat diet (HFD) significantly increase expression of miR-29a in myocytes. miR-29a targets IRS-1 3’UTR directly and represses IRS-1 expression at the translational level. Furthermore, the ectopic expression of miR-29a impairs insulin signaling and glucose uptake in myocytes through a substantial decrease in IRS-1. These findings suggest that the up-regulation of miR-29a by SFA is causally related to the development of insulin resistance in myocytes.  相似文献   

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We evaluated the effect of skeletal muscle mitochondrial uncoupling on energy and glucose metabolism under different diets. For 3 mo, transgenic HSA-mUCP1 mice with ectopic expression of uncoupling protein 1 in skeletal muscle and wild-type littermates were fed semisynthetic diets with varying macronutrient ratios (energy % carbohydrate-protein-fat): HCLF (41:42:17), HCHF (41:16:43); LCHF (11:45:44). Body composition, energy metabolism, and insulin resistance were assessed by NMR, indirect calorimetry, and insulin tolerance test, respectively. Gene expression in different organs was determined by real-time PCR. In wild type, both high-fat diets led to an increase in body weight and fat. HSA-mUCP1 mice considerably increased body fat on HCHF but stayed lean on the other diets. Irrespective of differences in body fat content, HSA-mUCP1 mice showed higher insulin sensitivity and decreased plasma insulin and liver triglycerides. Respiratory quotient and gene expression indicated overall increased carbohydrate oxidation of HSA-mUCP1 but a preferential channeling of fatty acids into muscle rather than liver with high-fat diets. Evidence for increased lipogenesis in white fat of HSA-mUCP1 mice suggests increased energy dissipating substrate cycling. Retinol binding protein 4 expression in white fat was increased in HSA-mUCP1 mice despite increased insulin sensitivity, excluding a causal role in the development of insulin resistance. We conclude that skeletal muscle mitochondrial uncoupling does not protect from the development of obesity in all circumstances. Rather it can lead to a "healthy" obese phenotype by preserving insulin sensitivity and a high metabolic flexibility, thus protecting from the development of obesity associated disturbances of glucose homeostasis.  相似文献   

17.
MicroRNAs(miRNAs)是一类大约22个核苷酸的非编码RNA.它能通过调控生长因子表达,引发肿瘤形成、细胞增殖和组织器官发育.本文通过构建miR-129-5p靶基因序列的双荧光素酶报告载体分析了miR-129-5p与靶基因之间的关系,应用脂质体转染技术和实时荧光定量技术观察了miR-129-5p在小鼠乳腺上皮细胞中的表达量及其变化,通过CASY细胞活力仪检测转染后的细胞增殖与活力变化,采用Western 印迹方法检Igf-1的变化.结果表明:miR-129-5p在小鼠乳腺青春期表达最高,成功构建了Igf-1基因 3′UTR荧光素酶报告载体, miR-129-5p抑制其荧光素酶活性(P <0.01),转染抑制子后miR-129-5p表达降低(P < 0.01),胰岛素样生长因子(Igf-1)表达增强(P <0.05),细胞增殖和活力增强(P <0.01),结果提示:miR-129-5p可能通过抑制靶基因蛋白Igf 1的表达,进而抑制小鼠乳腺上皮细胞增殖和活力.  相似文献   

18.
黄琼  胡杰  孙灵  王勤 《昆虫学报》2013,56(5):475-485
为给黄粉虫Tenebrio molitor抗逆机理研究提供理论依据, 本研究采用PCR和RACE法从黄粉虫幼虫中克隆出一个热休克蛋白70基因Tmhsp70, 并运用半定量RT-PCR法检测其在黄粉虫不同发育阶段的mRNA表达水平。结果表明: 克隆出的Tmhsp70 序列全长2 282 bp, 具有一个富含A的115 bp 5′ 非翻译区和一个1 935 bp的开放阅读框及一个富含A、 T的232 bp 3′-非翻译区。5′-非翻译区含有7个热休克元件nGAAn, 3′-非翻译区末端有长22 bp的Poly(A)尾。Tmhsp70编码的黄粉虫热休克蛋白(TmHSP70)具有3个典型的HSP70特征基序(IDLGTTYS, IFDLGGGTFDVSIL和IVLVGGSTRIPKIQQ)和1个胞质HSP70末端特征基序(EEVD), 无信号肽和跨膜区域, 包含2个主要的结构域, 即: N-端42 kDa的高度保守ATPase功能域和C-端18 kDa的保守多肽结合功能域。ATPase功能域的三级结构由2个大球形亚功能域组成, 具有1个核苷酸结合中心; 多肽结合功能域形成1个双层4股β-折叠片样的三明治结构和2个α-螺旋, 内含1个多肽结合通道。此外, 黄粉虫Tmhsp70 mRNA的表达具有热激诱导和发育调控的特征。半定量RT-PCR分析表明, 42℃热激1 h的黄粉虫各发育阶段Tmhsp70 mRNA的表达量上升了1.4~26.9倍。25℃下1日龄黄粉虫蛹中的Tmhsp70 mRNA 表达量要高于其余各发育阶段的累积表达量; 42℃热激1 h 后90日龄幼虫中的Tmhsp70 mRNA 表达量最丰富, 既高于30日龄和60日龄幼虫中的累积表达量, 也高于15日龄和30日龄成虫中的累积表达量。这些结果为进一步研究黄粉虫热休克蛋白的结构、 功能和表达调控及其与抗逆性的关系奠定了基础。  相似文献   

19.
Stearoyl-CoA desaturase (SCD)1 converts saturated fatty acids into monounsaturated fatty acids. Using muscle overexpression, we sought to determine the role of SCD1 expression in glucose and lipid metabolism and its effects on exercise capacity in mice. Wild-type C57Bl/6 (WT) and SCD1 muscle transgenic (SCD1-Tg) mice were generated, and expression of the SCD1 transgene was restricted to skeletal muscle. SCD1 overexpression was associated with increased triglyceride (TG) content. The fatty acid composition of the muscle revealed a significant increase in polyunsaturated fatty acid (PUFA) content of TG, including linoleate (18:2n6). Untrained SCD1-Tg mice also displayed significantly increased treadmill exercise capacity (WT = 6.6 ± 3 min, Tg = 71.9 ± 9.5 min; P = 0.0009). SCD1-Tg mice had decreased fasting plasma glucose, glucose transporter (GLUT)1 mRNA, fatty acid oxidation, mitochondrial content, and increased peroxisome proliferator-activated receptor (PPAR)δ and Pgc-1 protein expression in skeletal muscle. In vitro studies in C2C12 myocytes revealed that linoleate (18:2n6) and not oleate (18:1n9) caused a 3-fold increase in PPARδ and a 9-fold increase in CPT-1b with a subsequent increase in fat oxidation. The present model suggests that increasing delta-9 desaturase activity of muscle increases metabolic function, exercise capacity, and lipid oxidation likely through increased PUFA content, which increases PPARδ expression and activity. However, the mechanism of action that results in increased PUFA content of SCD1-Tg mice remains to be elucidated.  相似文献   

20.
Although aberrant miRNA signatures are associated with diabetes, yet, the status and role of altered miRNAs in the diabetic skeletal muscle is currently poorly understood. Here, we report that 41 miRNAs are altered in the diabetic gastrocnemius skeletal muscle and of these, miR-135a that is identified as a critical regulator of myogenesis, is significantly up-regulated. IRS2 is predicted as its potential putative target and its levels are down-regulated in the diabetic gastrocnemius skeletal muscle. In C2C12 cells, while miR-135a levels decreased during differentiation, IRS2 levels were up-regulated. miR-135a significantly reduced IRS2 protein levels and its 3′UTR luciferase reporter activity and these were blunted by the miR-135a inhibitor and mutation in the miR-135a binding site. Knock-down of endogenous miR-135a levels increased IRS2 at the mRNA and protein levels. miR-135a also attenuated insulin stimulated phosphorylation and activation of PI3Kp85α and Akt and glucose uptake. miR-135a levels were also found to be elevated in the human diabetic skeletal muscle. In-vivo silencing of miR-135a alleviated hyperglycemia, improved glucose tolerance and significantly restored the levels of IRS2 and p-Akt in the gastrocnemius skeletal muscle of db/db mice without any effect on their hepatic levels. These suggest that miR-135a targets IRS2 levels by binding to its 3′UTR and this interaction regulates skeletal muscle insulin signaling.  相似文献   

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