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DEF-1/ASAP1是一种针对ARF1的GTP酶激活蛋白(GAP),它通过一种依赖GAP的机制增强细胞运动性。

DEF-1/ASAP1 is a GTPase-activating protein (GAP) for ARF1 that enhances cell motility through a GAP-dependent mechanism.

作者信息

Furman Craig, Short Sarah M, Subramanian Romesh R, Zetter Bruce R, Roberts Thomas M

机构信息

Department of Cancer Biology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 2002 Mar 8;277(10):7962-9. doi: 10.1074/jbc.M109149200. Epub 2001 Dec 31.

Abstract

DEF-1/ASAP1 is an ADP-ribosylation factor GTPase-activating protein (ARF GAP) that localizes to focal adhesions and is involved in cytoskeletal regulation. In this paper, we use a cell-based ARF GAP assay to demonstrate that DEF-1 functions as a GAP for ARF1 and not ARF6 in vivo. This degree of substrate preference was unique to DEF-1, as other ARF GAP proteins, ACAP1, ACAP2, and ARFGAP1, were able to function on both ARF1 and ARF6. Since transient overexpression of DEF-1 has been shown to interfere with focal adhesion formation and platelet-derived growth factor-induced membrane ruffling, we investigated whether NIH 3T3 cells stably expressing DEF-1 have altered cell motility. Here we report that ectopic DEF-1 enhances cell migration toward PDGF as well as IGF-1. This chemotactic effect appears to result from a general increase in cell motility, as DEF-1-expressing cells also exhibit enhanced levels of basal and chemokinetic motility. The increase in cell motility is dependent on DEF-1 GAP activity, since a DEF-1 mutant lacking the GAP domain failed to stimulate motility. This suggests that DEF-1 alters cell motility through the deactivation of ARF1. In contrast, the inhibition of cell spreading by DEF-1 was not dependent on GAP activity, indicating that spreading and motility are altered by DEF-1 through different pathways.

摘要

DEF-1/ASAP1是一种ADP核糖基化因子GTP酶激活蛋白(ARF GAP),定位于粘着斑,参与细胞骨架调节。在本文中,我们使用基于细胞的ARF GAP分析来证明DEF-1在体内作为ARF1而非ARF6的GAP发挥作用。这种底物偏好程度是DEF-1独有的,因为其他ARF GAP蛋白ACAP1、ACAP2和ARFGAP1能够作用于ARF1和ARF6两者。由于已证明DEF-1的瞬时过表达会干扰粘着斑形成和血小板衍生生长因子诱导的膜皱褶,我们研究了稳定表达DEF-1的NIH 3T3细胞是否具有改变的细胞运动性。在此我们报告,异位表达的DEF-1增强了细胞向PDGF以及IGF-1的迁移。这种趋化作用似乎是由于细胞运动性普遍增加所致,因为表达DEF-1的细胞也表现出基础运动性和化学动力学运动性水平的提高。细胞运动性的增加依赖于DEF-1的GAP活性,因为缺乏GAP结构域的DEF-1突变体未能刺激运动性。这表明DEF-1通过使ARF1失活来改变细胞运动性。相比之下,DEF-1对细胞铺展的抑制不依赖于GAP活性,表明DEF-1通过不同途径改变铺展和运动性。

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