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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >The enzyme L-isoaspartyl (D-aspartyl) methyltransferase is required for VEGF-dependent endothelial cell migration and tubulogenesis
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The enzyme L-isoaspartyl (D-aspartyl) methyltransferase is required for VEGF-dependent endothelial cell migration and tubulogenesis

机译:VEGF依赖性内皮细胞迁移和肾小管生成需要酶L-异天冬氨酰(D-天冬氨酰)甲基转移酶

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The protein l-isoaspartyl (d-aspartyl) methyltransferase (PIMT) methylates proteins carrying altered aspartyl residues in their structure. PIMT is postulated to limit the accumulation of these damaged proteins with abnormal aspartyl residues. However, little is known about the role of PIMT in tumor growth and almost nothing about its involvement in angiogenic processes. We previously reported that PIMT was up-regulated when endothelial cells were detached from extracellular matrix, leading us to postulate that PIMT could play a critical role during angiogenic steps, since the contacts between endothelial cells and the extracellular matrix are intensively regulated during this process. Here, we demonstrated that PIMT down-regulation by siRNA in human umbilical vein endothelial cells (HUVECs) inhibited both cell migration and tube formation in vitro when stimulated by vascular endothelial growth factor (VEGF). Conversely, overexpression of wild-type PIMT promoted HUVEC migration in the presence of VEGF, while this response was prevented in cells transfected with the inactive mutant PIMT(D83V). Similar results were obtained with the two forms of PIMT regarding their capacity to regulate the action of VEGF during the formation of capillary-like structures in vitro. Together, these data highlight the importance of the catalytic activity of PIMT to mediate VEGF effects during endothelial cell migration and tube formation in angiogenesis. Furthermore, these results identify a new function for PIMT as an enzyme involved in pro-angiogenic processes.
机译:蛋白质1-异天冬氨酰(d-天冬氨酰)甲基转移酶(PIMT)甲基化蛋白质,在其结构中携带改变的天冬氨酰残基。假定PIMT可以限制这些损坏的蛋白质以及异常的天冬氨酰残基的积累。但是,对PIMT在肿瘤生长中的作用了解甚少,而对它参与血管生成过程的了解却很少。我们先前曾报道内皮细胞从细胞外基质脱离时PIMT上调,导致我们推测PIMT可能在血管生成步骤中起关键作用,因为在此过程中内皮细胞与细胞外基质之间的接触受到强烈调节。在这里,我们证明了当受血管内皮生长因子(VEGF)刺激时,人脐静脉内皮细胞(HUVECs)中siRNA对PIMT的下调抑制了细胞迁移和管的形成。相反,野生型PIMT的过表达在VEGF存在下促进了HUVEC迁移,而在用无活性突变体PIMT(D83V)转染的细胞中阻止了这种应答。关于两种形式的PIMT在体外形成毛细血管样结构期间调节VEGF作用的能力,也获得了相似的结果。总之,这些数据凸显了PIMT催化活性在血管生成中内皮细胞迁移和管形成过程中介导VEGF效应的重要性。此外,这些结果确定了PIMT作为参与促血管生成过程的酶的新功能。

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