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Cdk5 介导中性粒细胞 GTP 诱导分泌过程中波形蛋白 Ser56 的磷酸化。

Cdk5 mediates vimentin Ser56 phosphorylation during GTP-induced secretion by neutrophils.

机构信息

Department of Cell Biology & Anatomy, University of Calgary, Calgary, Alberta, Canada.

出版信息

J Cell Physiol. 2012 Feb;227(2):739-50. doi: 10.1002/jcp.22782.

Abstract

Secretion by neutrophils contributes to acute inflammation following injury or infection. Vimentin has been shown to be important for secretion by neutrophils but little is known about its dynamics during secretion, which is regulated by cyclin-dependent kinase 5 (Cdk5). In this study, we sought to examine the vimentin dynamics and its potential regulation by Cdk5 during neutrophil secretion. We show that vimentin is a Cdk5 substrate that is specifically phosphorylated at Ser56. In response to neutrophil stimulation with GTP, vimentin Ser56 was phosphorylated and colocalized with Cdk5 in the cytoplasmic compartment. Vimentin pSer56 and Cdk5 colocalization was consistent with coimmunoprecipitation from stimulated cells. Vimentin Ser56 phosphorylation occurred immediately after stimulation, and a remarkable increase in phosphorylation was noted later in the secretory process. Decreased GTP-induced vimentin Ser56 phosphorylation and secretion resulted from inhibition of Cdk5 activity by roscovitine or olomoucine or by depletion of Cdk5 by siRNA, suggesting that GTP-induced Cdk5-mediated vimentin Ser56 phosphorylation may be related to GTP-induced Cdk5-mediated secretion by neutrophils. Indeed, inhibition of vimentin Ser56 phosphorylation led to a corresponding inhibition of GTP-induced secretion, indicating a link between these two events. While fMLP also induced vimentin Ser56 phosphorylation, such phosphorylation was unaffected by roscovitine, which nonetheless, inhibited secretion, suggesting that Cdk5 regulates fMLP-induced secretion via a mechanism independent of Cdk5-mediated vimentin Ser56 phosphorylation. These findings demonstrate the distinct involvement of Cdk5 in GTP- and fMLP-induced secretion by neutrophils, and support the notion that specific targeting of Cdk5 may serve to inhibit the neutrophil secretory process.

摘要

中性粒细胞的分泌作用有助于损伤或感染后的急性炎症。已经表明中间丝蛋白 vimentin 对中性粒细胞的分泌很重要,但对于其在分泌过程中的动态变化知之甚少,而这一过程是由细胞周期蛋白依赖性激酶 5(Cdk5)调控的。在这项研究中,我们试图研究中性粒细胞分泌过程中 vimentin 的动态变化及其潜在的 Cdk5 调控。我们发现 vimentin 是 Cdk5 的底物,可特异性磷酸化丝氨酸 56 位(Ser56)。在 GTP 刺激中性粒细胞时,vimentin Ser56 被磷酸化,并与细胞质中的 Cdk5 共定位。从刺激细胞中进行的共免疫沉淀实验也得到了 vimentin pSer56 和 Cdk5 共定位的结果。vimentin Ser56 磷酸化发生在刺激后立即,在分泌过程的后期观察到磷酸化显著增加。Roscovitine、olomoucine 抑制 Cdk5 活性或 siRNA 耗尽 Cdk5 后,GTP 诱导的 vimentin Ser56 磷酸化和分泌减少,表明 GTP 诱导的 Cdk5 介导的 vimentin Ser56 磷酸化可能与 GTP 诱导的中性粒细胞分泌有关。事实上,抑制 vimentin Ser56 磷酸化会导致 GTP 诱导的分泌相应减少,表明这两个事件之间存在联系。尽管 fMLP 也诱导 vimentin Ser56 磷酸化,但 roscovitine 对其没有影响,而 roscovitine 抑制了分泌,这表明 Cdk5 通过独立于 Cdk5 介导的 vimentin Ser56 磷酸化的机制调节 fMLP 诱导的分泌。这些发现表明 Cdk5 参与了中性粒细胞的 GTP 和 fMLP 诱导的分泌,支持了特定靶向 Cdk5 可能抑制中性粒细胞分泌过程的观点。

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