首页> 外文期刊>Biochemistry and Cell Biology >Regulation of protein L-isoaspartyl methyltransferase by cell-matrix interactions: involvement of integrin alphavbeta3, PI 3-kinase, and the proteasome.
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Regulation of protein L-isoaspartyl methyltransferase by cell-matrix interactions: involvement of integrin alphavbeta3, PI 3-kinase, and the proteasome.

机译:通过细胞-基质相互作用调节蛋白L-异天冬氨酰甲基转移酶:整合素αvbeta3,PI 3-激酶和蛋白酶体的参与。

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摘要

The enzyme L-isoaspartyl methyltransferase (PIMT) is known to repair damaged proteins that have accumulated abnormal aspartyl residues during cell aging. However, little is known about the mechanisms involved in the regulation of PIMT expression. Here we report that PIMT expression in bovine aortic endothelial cells is regulated by cell detachment and readhesion to a substratum. During cell detachment, the PIMT level was rapidly and strongly increased and correlated with a stimulation of protein synthesis. Aside from endothelial cells, PIMT levels were also regulated by cell adhesion in various cancer cell lines. The upregulation of PIMT expression could be prevented by an anti-alphavbeta3 antibody (LM609) or by a cyclic RGD peptide (XJ735) specific to integrin alphavbeta3, indicating that this integrin was likely involved in PIMT regulation. Moreover, we found that PIMT expression returned to the basal level when cells were replated on a substratum after detachment, though downregulation of PIMT expression could be partly prevented by the PI3K inhibitors LY294002 and wortmannin, as well as by the proteasome inhibitors MG-132, lactacystin, and beta-lactone. These findings support the assumption that the PIMT level was downregulated by proteasomal degradation, involving the PI3K pathway, during cell attachment. This study reports new insights on the molecular mechanisms responsible for the regulation of PIMT expression in cells. The regulation of PIMT level upon cell-substratum contact suggests a potential role for PIMT in biological processes such as wound healing, cell migration, and tumor metastasis dissemination.
机译:已知L-异天冬氨酰甲基转移酶(PIMT)可以修复在细胞衰老过程中积累了异常天冬氨酰残基的受损蛋白质。但是,关于PIMT表达调控的机制知之甚少。在这里,我们报告PIMT在牛主动脉内皮细胞中的表达受细胞脱离和对基底的粘附的调节。在细胞脱离过程中,PIMT水平迅速而强烈地增加,并与蛋白质合成的刺激相关。除了内皮细胞,PIMT水平还受各种癌细胞系中细胞粘附的调节。 PIMT表达的上调可以通过抗αvbeta3抗体(LM609)或对整联蛋白alphavbeta3特异的环状RGD肽(XJ735)阻止,这表明该整联蛋白可能参与了PIMT调控。此外,我们发现,细胞脱离后重新铺在基底上时,PIMT表达恢复到基础水平,尽管PI3K抑制剂LY294002和渥曼青霉素以及蛋白酶体抑制剂MG-132可以部分阻止PIMT表达的下调,乳酸和β-内酯。这些发现支持以下假设:在细胞附着过程中,蛋白酶体降解(包括PI3K途径)使PIMT水平下调。这项研究报告了负责调节细胞中PIMT表达的分子机制的新见解。细胞与基质接触后PIMT水平的调节表明PIMT在诸如伤口愈合,细胞迁移和肿瘤转移扩散等生物学过程中具有潜在作用。

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