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首页> 外文期刊>Kidney international. >Autocrine class 3 semaphorin system regulates slit diaphragm proteins and podocyte survival
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Autocrine class 3 semaphorin system regulates slit diaphragm proteins and podocyte survival

机译:自分泌3类信号量系统调节缝隙隔膜蛋白和足细胞存活

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Class 3 semaphorins are guidance proteins that play crucial roles during development. Semaphorins 3A (sema 3A) and 3F are expressed by podocytes in vivo throughout ontogeny and their function is unknown. Here we examined the expression of class 3 semaphorins (3A, 3B, 3C, 3D, 3E, and 3F) and their receptors (neuropilins 1 and 2, plexins A1, A2, A3, B2, and D1) in undifferentiated and differentiated mouse podocytes using reverse transcriptase-polymerase chain reaction (RT-PCR). All class 3 semaphorins, neuropilins 1 and 2 are expressed by undifferentiated and differentiated podocytes at similar levels. Differentiated podocytes expressed 2–4-fold higher plexin A1, A2, and A3 mRNA levels than undifferentiated podocytes. To examine semaphorin regulation, we exposed podocytes to recombinant sema 3A. Sema 3A decreased semaphorin 3B, plexin A1, A3, and D1 50% and reduced plexin A2 mRNA to undetectable levels. To identify sema 3A function in podocytes, we examined whether sema 3A regulates slit diaphragm proteins and podocyte survival. Sema 3A induced a dose-response podocin downregulation and decreased its interaction with CD2-associated protein and nephrin, as determined by Western analysis and co-immunoprecipitation. To evaluate sema 3A role in podocyte survival, we quantified podocyte apoptosis using a caspase 3 activity marker. Sema 3A induced a 10-fold increase in podocyte apoptosis and significantly decreased the activity of the Akt survival pathway. Our data indicate that (1) immortalized podocytes in culture have a functional autocrine semaphorin system that is regulated by differentiation and ligand availability; (2) sema 3A signaling regulates the expression and interactions of slit-diaphragm proteins and decreases podocyte survival.
机译:3类信号量蛋白是指导蛋白,在发育过程中起关键作用。信号蛋白3A(信号3A)和3F在整个个体发育过程中由足细胞在体内表达,其功能尚不清楚。在这里,我们检查了未分化和分化的小鼠足细胞中3类信号量(3A,3B,3C,3D,3E和3F)及其受体(神经纤毛蛋白1和2,丛蛋白A1,A2,A3,B2和D1)的表达使用逆转录聚合酶链反应(RT-PCR)。所有第3类信号量,神经纤毛蛋白1和2均由未分化和分化的足细胞以相似的水平表达。分化的足细胞表达的plexin A1,A2和A3 mRNA水平比未分化的足细胞高2-4倍。为了检查信号量调节,我们将足细胞暴露于重组信号量3A中。 Sema 3A使信号量3B,plexin A1,A3和D1降低50%,并将plexin A2 mRNA降低到无法检测的水平。为了确定Sema 3A在足细胞中的功能,我们检查了Sema 3A是否调节缝隙隔膜蛋白和足细胞存活。通过Western分析和免疫共沉淀,Sema 3A诱导了剂量反应podocin下调,并降低了其与CD2相关蛋白和nephrin的相互作用。为了评估Sema 3A在足细胞存活中的作用,我们使用caspase 3活性标记物定量足细胞的凋亡。 Sema 3A诱导足细胞凋亡增加10倍,并显着降低Akt生存途径的活性。我们的数据表明:(1)培养中的永生足细胞具有功能性自分泌信号量系统,该系统受分化和配体可用性的调节; (2)Sema 3A信号调节狭缝膜蛋白的表达和相互作用,并降低足细胞存活。

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