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Ran结合蛋白RanBPM与TrkA受体相互作用。

The Ran binding protein RanBPM interacts with TrkA receptor.

作者信息

Yuan Yuhe, Fu Chengbo, Chen Hong, Wang Xin, Deng Weiwei, Huang Bing-Ren

机构信息

National Laboratory of Medical Molecular Biology, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100005, China.

出版信息

Neurosci Lett. 2006 Oct 16;407(1):26-31. doi: 10.1016/j.neulet.2006.06.059. Epub 2006 Sep 7.

Abstract

RanBPM as a novel binding protein can interact with neurotrophin receptor p75NTR and tyrosine kinase receptor Met which has a similar tyrosine kinase structure as receptor TrkA has. Whether RanBPM interacts with neurotrophin receptor TrkA has not been established to date. In this study, using yeast two-hybrid system, it was identified that RanBPM bound to the intracellular domain (ICD) of neurotrophin receptor TrkA through its SPRY motif. We confirmed the formation of complexes between RanBPM and TrkA by co-immunoprecipitation studies and GST pull-down assays. The region of TrkA interacted with the SPRY domain of RanBPM was located in its tyrosine kinase domain. Furthermore, coimmunoprecipitaiton revealed endogenous RanBPM and receptors TrkA did interact in several mammalian cell lines. It was found that the overexpression of RanBPM could inhibit NGF-induced increase of nuclear factor of activated T cells (NFAT) dependent luciferase expression through its interaction with receptor TrkA, and NFAT transcriptional activity plays an important role in neuronal signal transduction. These data suggested that RanBPM could participate in neurotrophin-mediated gene transcription and expression by its binding to TrkA.

摘要

RanBPM作为一种新型结合蛋白,可与神经营养因子受体p75NTR以及具有与受体TrkA相似酪氨酸激酶结构的酪氨酸激酶受体Met相互作用。迄今为止,尚未确定RanBPM是否与神经营养因子受体TrkA相互作用。在本研究中,利用酵母双杂交系统,确定RanBPM通过其SPRY基序与神经营养因子受体TrkA的胞内结构域(ICD)结合。我们通过免疫共沉淀研究和GST下拉试验证实了RanBPM与TrkA之间形成复合物。TrkA与RanBPM的SPRY结构域相互作用的区域位于其酪氨酸激酶结构域中。此外,免疫共沉淀显示内源性RanBPM与受体TrkA在几种哺乳动物细胞系中确实相互作用。发现RanBPM的过表达可通过其与受体TrkA的相互作用抑制NGF诱导的活化T细胞核因子(NFAT)依赖性荧光素酶表达增加,并且NFAT转录活性在神经元信号转导中起重要作用。这些数据表明RanBPM可通过与TrkA结合参与神经营养因子介导的基因转录和表达。

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