首页> 美国卫生研究院文献>Biochemical Journal >Staurosporine induces endothelial cell apoptosis via focal adhesion kinase dephosphorylation and focal adhesion disassembly independent of focal adhesion kinase proteolysis.
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Staurosporine induces endothelial cell apoptosis via focal adhesion kinase dephosphorylation and focal adhesion disassembly independent of focal adhesion kinase proteolysis.

机译:星形孢菌素通过粘着斑激酶的去磷酸化和粘着斑的拆卸而独立于粘着斑激酶的蛋白水解作用诱导内皮细胞凋亡。

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摘要

The survival of endothelial cells is dependent on interactions between the matrix and integrins mediated through focal adhesions. Focal adhesion kinase (FAK) is thought to play a key role in maintaining focal adhesion function and cell survival, whereas caspase-mediated FAK proteolysis is implicated in focal adhesion disassembly during apoptosis. We examined the relationship between changes in FAK phosphorylation and proteolysis during apoptosis of primary porcine aortic endothelial cells (PAEC) induced by staurosporine, a widely used apoptogenic agent in diverse cell types. Staurosporine-induced PAEC apoptosis was detected after 1 h and was preceded by disruption and loss of FAK localization to focal adhesions within a few minutes, whereas staurosporine-induced cleavage of FAK occurred only after 8-24 h. Staurosporine induced a very rapid dephosphorylation of FAK at Tyr(861) and Tyr(397) and caused dissociation of phosphorylated FAK from focal adhesions as early as 30 s. The effect of staurosporine was very potent with striking inhibition of Tyr(861) and Tyr(397) phosphorylation and focal adhesion disruption occurring in the range 10-100 nM. Selective inhibition of a known target of staurosporine, protein kinase C, using GF109203X, and of phosphoinositide 3'-kinase using wortmannin, did not reduce FAK tyrosine phosphorylation at Tyr(861) and Tyr(397), or cause disruption of focal adhesions. Cycloheximide, the protein synthesis inhibitor, induced PAEC apoptosis more slowly than staurosporine, but did not induce FAK dephosphorylation or rapid focal adhesion disruption, and instead caused a slower loss of focal adhesions and a marked increase in FAK proteolysis. These studies show that FAK dephosphorylation and focal adhesion disassembly are very early events mediating the onset of staurosporine-induced endothelial cell apoptosis and are dissociated from FAK proteolysis. Cycloheximide induces apoptosis through a pathway involving FAK proteolysis without dephosphorylation.
机译:内皮细胞的存活取决于基质与整合素之间通过粘着粘附介导的相互作用。黏着斑激酶(FAK)被认为在维持黏着斑功能和细胞存活中起关键作用,而胱天蛋白酶介导的FAK蛋白水解与凋亡过程中的黏着斑拆卸有关。我们检查了由星形孢菌素(一种在各种细胞类型中广泛使用的凋亡发生剂)诱导的主猪主动脉内皮细胞(PAEC)凋亡期间FAK磷酸化变化与蛋白水解之间的关系。星形孢菌素诱导的PAEC凋亡在1 h后被检测到,并在几分钟之内破坏和丧失FAK定位至粘着斑,而staurosporine诱导的FAK裂解仅在8-24 h后发生。 Staurosporine在Tyr(861)和Tyr(397)处引起FAK的快速磷酸化,并在30 s内引起磷酸化FAK从粘着斑中解离。星形孢菌素的作用非常强,可显着抑制Tyr(861)和Tyr(397)的磷酸化,并在10-100 nM范围内发生粘着斑破坏。使用GF109203X选择性抑制星形孢菌素,蛋白激酶C的已知靶标,以及使用渥曼青霉素对磷酸肌醇3'激酶的选择性抑制,不会降低Tyr(861)和Tyr(397)的FAK酪氨酸磷酸化,或不会引起粘着斑破坏。蛋白质合成抑制剂环己二酰亚胺比星形孢菌素更慢地诱导PAEC凋亡,但不引起FAK脱磷酸化或快速的粘着斑破坏,而是引起粘着斑损失较慢和FAK蛋白水解显着增加。这些研究表明,FAK的去磷酸化和粘着斑的拆卸是介导星形孢菌素诱导的内皮细胞凋亡发生的非常早期的事件,并且与FAK的蛋白水解作用分离。环己酰亚胺可通过涉及FAK蛋白水解而无去磷酸化的途径诱导凋亡。

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