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阿巴通过激活小 GTP 酶 Rac1 促进血小板衍生生长因子介导的细胞膜皱襞。

Abba promotes PDGF-mediated membrane ruffling through activation of the small GTPase Rac1.

机构信息

Second Hospital, The Second Clinical School, Nanjing Medical University, Jiangjiayuan 121, Nanjing, Jiangsu 210011, China.

出版信息

Biochem Biophys Res Commun. 2010 Oct 29;401(4):527-32. doi: 10.1016/j.bbrc.2010.09.087. Epub 2010 Sep 26.

Abstract

Abba is a member of the I-BAR-domain protein family that is characterized by a convex-shaped membrane-binding motif. Overexpression of GFP-tagged Abba in murine fibroblasts potentiated PDGF-mediated formation of membrane ruffles and lamellipodia. Immunofluorescent microscopy and pull-down analysis revealed that GFP-Abba colocalized with an active form of Rac1 in the membrane ruffles and enhanced the Rac GTPase activity in response to PDGF stimulation. Further immunoprecipitation assays demonstrated that GFP-Abba bound to both wild-type and constitutively active Rac1 and that the binding to either of the Rac1 forms was significantly enhanced upon PDGF stimulation. On the other hand, an Abba mutant deficient in Rac1 binding failed to promote membrane ruffling and Rac1 activation in response to PDGF. However, the cells overexpressing a truncated mutant carrying the I-BAR domain alone displayed numerous filopodia-like microspikes in a manner independent of growth factors. Also, the Rac-binding activity of the mutant was not affected by PDGF treatment. Our data indicates that the interaction between full-length Abba and Rac1 is implicated in membrane deformation and subjected to a growth factor-mediated regulation through the C-terminal sequence.

摘要

Abba 是 I-BAR 结构域蛋白家族的成员,其特征是具有凸形的膜结合基序。在鼠成纤维细胞中过表达 GFP 标记的 Abba 增强了 PDGF 介导的膜皱襞和片状伪足的形成。免疫荧光显微镜和下拉分析显示 GFP-Abba 与膜皱襞中活性形式的 Rac1 共定位,并增强了 Rac GTP 酶活性对 PDGF 刺激的反应。进一步的免疫沉淀实验表明 GFP-Abba 与野生型和组成型激活的 Rac1 结合,并且在 PDGF 刺激下,与 Rac1 形式的结合显著增强。另一方面,缺乏 Rac1 结合的 Abba 突变体不能促进 PDGF 刺激下的膜皱襞和 Rac1 激活。然而,过表达单独携带 I-BAR 结构域的截断突变体的细胞以独立于生长因子的方式显示出许多类丝状微刺。此外,突变体的 Rac 结合活性不受 PDGF 处理的影响。我们的数据表明全长 Abba 和 Rac1 之间的相互作用参与了膜变形,并通过 C 末端序列受到生长因子介导的调节。

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