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钙蛋白酶2在调节膜突出中的亚型特异性功能。

Isoform specific function of calpain 2 in regulating membrane protrusion.

作者信息

Franco S, Perrin B, Huttenlocher A

机构信息

Cellular and Molecular Biology Program, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Exp Cell Res. 2004 Sep 10;299(1):179-87. doi: 10.1016/j.yexcr.2004.05.021.

Abstract

Previous studies have demonstrated a role for calpains in cell migration through their capacity to regulate focal adhesion dynamics and rear retraction. In this study, we provide evidence that calpains also modulate membrane protrusion activity in fibroblasts. We find that an immortalized Capn4(-/-) fibroblast line displays an altered morphology, characterized by numerous thin membrane projections and increased transient membrane activity. Furthermore, we show that protrusion kinetics of lamellipodia at the leading edge are improperly regulated in Capn4(-/-) cells, leading to impaired net forward lamellipodial extension. To address the isoform specific functions of calpain 1 and calpain 2 during cell protrusion, we stably introduced small interfering RNAs (siRNAs) targeting each isoform into a fibroblast cell line. Despite a loss in calpain 1 activity, calpain 1 knockdown cells show normal morphology and membrane protrusion dynamics. However, cells in which calpain 2 is knocked down are characterized by a protrusive morphology, increased transient membrane activity and altered protrusion kinetics, similar to the Capn4(-/-) fibroblasts. Additionally, we find that calpain 2, but not calpain 1, is required for proteolysis of the cytoskeletal and focal adhesion proteins FAK, paxillin, spectrin, and talin. Together, our findings support a novel role for calpain 2 in limiting membrane protrusions and in regulating lamellipodial dynamics at the leading edge of migrating cells.

摘要

先前的研究已证明钙蛋白酶通过其调节粘着斑动力学和尾部回缩的能力在细胞迁移中发挥作用。在本研究中,我们提供证据表明钙蛋白酶也调节成纤维细胞中的膜突出活性。我们发现一种永生化的Capn4(-/-)成纤维细胞系呈现出形态改变,其特征为大量薄的膜突起和增加的瞬时膜活性。此外,我们表明Capn4(-/-)细胞中前沿板状伪足的突出动力学调节不当,导致净向前板状伪足延伸受损。为了研究钙蛋白酶1和钙蛋白酶2在细胞突出过程中的亚型特异性功能,我们将靶向每种亚型的小干扰RNA(siRNA)稳定导入成纤维细胞系。尽管钙蛋白酶1活性丧失,但钙蛋白酶1敲低的细胞显示出正常的形态和膜突出动力学。然而,钙蛋白酶2被敲低的细胞具有突出的形态、增加的瞬时膜活性和改变的突出动力学,类似于Capn4(-/-)成纤维细胞。此外,我们发现细胞骨架和粘着斑蛋白FAK、桩蛋白、血影蛋白和踝蛋白的蛋白水解需要钙蛋白酶2而不是钙蛋白酶1。总之,我们的研究结果支持钙蛋白酶2在限制膜突出和调节迁移细胞前沿板状伪足动力学方面的新作用。

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