首页> 外文期刊>Molecular & cellular proteomics: MCP >Proteomics analysis identifies molecular targets related to diabetes mellitus-associated bladder dysfunction.
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Proteomics analysis identifies molecular targets related to diabetes mellitus-associated bladder dysfunction.

机译:蛋白质组学分析确定了与糖尿病相关的膀胱功能障碍相关的分子靶标。

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Protein expression profiles in rat bladder smooth muscle were compared between animal models of streptozotocin-induced diabetes mellitus (STZ-DM) and age-matched controls at 1 week and 2 months after induction of hyperglycemia with STZ treatment. At each time point, protein samples from four STZ-DM and four age-matched control rat bladder tissues were prepared independently and analyzed together across multiple DIGE gels using a pooled internal standard sample to quantify expression changes with statistical confidence. A total of 100 spots were determined to be significantly changing among the four experimental groups. A subsequent mass spectrometry analysis of the 100 spots identified a total of 56 unique proteins. Of the proteins identified by two-dimensional DIGE/MS, 10 exhibited significant changes 1 week after STZ-induced hyperglycemia, whereas the rest showed differential expression after 2 months. A network analysis of these proteins using MetaCore suggested induction of transcriptional factors that are too low to be detected by two-dimensional DIGE and identified an enriched cluster of down-regulated proteins that are involved in cell adhesion, cell shape control, and motility, including vinculin, intermediate filaments, Ppp2r1a, and extracellular matrix proteins. The proteins that were up-regulated include proteins involved in muscle contraction (e.g. Mrlcb and Ly-GDI), in glycolysis (e.g. alpha-enolase and Taldo1), in mRNA processing (e.g. heterogeneous nuclear ribonucleoprotein A2/B1), in inflammatory response (e.g. S100A9, Annexin 1, and apoA-I), and in chromosome segregation and migration (e.g. Tuba1 and Vil2). Our results suggest that the development of diabetes-related complications in this model involves the down-regulation of structural and extracellular matrix proteins in smooth muscle that are essential for normal muscle contraction and relaxation but also induces proteins that are associated with cell proliferation and inflammation that may account for some of the functional deficits known to occur in diabetic complications of bladder.
机译:在链脲佐菌素诱导的糖尿病(STZ-DM)和年龄匹配的对照组动物模型之间比较了大鼠膀胱平滑肌中的蛋白表达谱,该模型在用STZ治疗诱导高血糖后1周和2个月进行。在每个时间点,分别制备四个STZ-DM和四个年龄匹配的对照大鼠膀胱组织的蛋白质样品,并使用合并的内部标准样品在多个DIGE凝胶上一起进行分析,从而以统计学的置信度定量表达变化。确定在四个实验组中共有100个斑点发生了显着变化。随后对100个斑点进行质谱分析,鉴定出总共56种独特蛋白质。通过二维DIGE / MS鉴定的蛋白质中,有10种在STZ诱导的高血糖症发生1周后表现出显着变化,而其余的在2个月后表现出差异表达。使用MetaCore对这些蛋白质进行的网络分析表明,转录因子的诱导水平太低,无法被二维DIGE检测到,并鉴定出富含下调蛋白的簇,这些蛋白与细胞粘附,细胞形状控制和运动有关,包括新蛋白,中间丝,Ppp2r1a和细胞外基质蛋白。上调的蛋白质包括参与肌肉收缩的蛋白质(例如,Mrlcb和Ly-GDI),糖酵解(例如,α-烯醇酶和Taldo1),mRNA加工(例如,异质核糖核蛋白A2 / B1),炎性反应(例如S100A9,膜联蛋白1和apoA-I),以及染色体的分离和迁移(例如Tuba1和Vil2)。我们的结果表明,该模型中与糖尿病相关的并发症的发展涉及平滑肌中结构和细胞外基质蛋白的下调,这对于正常的肌肉收缩和松弛是必不可少的,但还诱导了与细胞增殖和炎症相关的蛋白可能解释了已知在膀胱糖尿病并发症中发生的某些功能缺陷。

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