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鉴定神经软骨素作为与Diaphanous相关的成束蛋白Dia1的FH3结构域的新相互作用伙伴。

Identification of Neurochondrin as a new interaction partner of the FH3 domain of the Diaphanous-related formin Dia1.

作者信息

Schwaibold Eva M C, Brandt Dominique T

机构信息

Institute of Pharmacology, University of Heidelberg, Im Neuenheimer Feld 366, 69120 Heidelberg, Germany.

出版信息

Biochem Biophys Res Commun. 2008 Aug 29;373(3):366-72. doi: 10.1016/j.bbrc.2008.06.042. Epub 2008 Jun 20.

Abstract

Mammalian Diaphanous (Dia)-related formins initiate the assembly of filamentous actin downstream of Rho GTPases to regulate cellular processes such as cytokinesis, cell polarity, cell motility and adhesion. In this work, we show that Neurochondrin (NC) is a novel Dia1 interacting protein. NC specifically binds to the formin homology 3 (FH3), but not to the FH1 or FH2 domain of Dia1. Both proteins show a partial co-localization in dissociated primary rat hippocampal neurons. Ectopic expression of both proteins induced neurite outgrowth in Neuro2A cells. Using a series of deletion mutants of NC we could show that the first 100 amino acids were responsible for its effect on neurite outgrowth, whereas the C-terminal part of NC had no neurite outgrowth promoting activity. Moreover, co-expression of the C terminus of NC with Dia1DeltaDAD resulted in a dramatic reduction of Dia1-induced neurite outgrowth. On the basis of actin fractionation assays, SRF-activity assays as well as microtubule stabilization assays, we could demonstrate that the C terminus of NC does not influence the actin polymerizing activity of Dia1, indicating a more specific function of NC in the modulation of Dia1 activity.

摘要

哺乳动物中与透明带蛋白(Diaphanous,Dia)相关的formin蛋白在Rho GTP酶下游启动丝状肌动蛋白的组装,以调节诸如胞质分裂、细胞极性、细胞运动和黏附等细胞过程。在这项研究中,我们发现神经软骨蛋白(Neurochondrin,NC)是一种新型的与Dia1相互作用的蛋白。NC特异性结合formin同源结构域3(FH3),而不结合Dia1的FH1或FH2结构域。这两种蛋白在原代大鼠海马神经元解离细胞中呈现部分共定位。这两种蛋白的异位表达均诱导Neuro2A细胞的神经突生长。利用一系列NC缺失突变体,我们发现前100个氨基酸负责其对神经突生长的影响,而NC的C末端部分没有促进神经突生长的活性。此外,NC的C末端与Dia1DeltaDAD共表达导致Dia1诱导的神经突生长显著减少。基于肌动蛋白分级分离试验、血清反应因子(SRF)活性试验以及微管稳定试验,我们能够证明NC的C末端不影响Dia1的肌动蛋白聚合活性,这表明NC在调节Dia1活性方面具有更特殊的功能。

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