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一种胞质近膜界面调节丛状蛋白A3的寡聚化和信号转导。

A cytosolic juxtamembrane interface modulates plexin A3 oligomerization and signal transduction.

作者信息

Barton Rachael, Palacio Danica, Iovine M Kathryn, Berger Bryan W

机构信息

Department of Chemical and Biomolecular Engineering, Lehigh University, Bethlehem, Pennsylvania, United States of America.

Department of Biological Sciences, Lehigh University, Bethlehem, Pennsylvania, United States of America.

出版信息

PLoS One. 2015 Jan 7;10(1):e0116368. doi: 10.1371/journal.pone.0116368. eCollection 2015.

Abstract

Plexins (plxns) are transmembrane (TM) receptors involved in the guidance of vascular, lymphatic vessel, and neuron growth as well as cancer metastasis. Plxn signaling results in cytosolic GTPase-activating protein activity, and previous research implicates dimerization as important for activation of plxn signaling. Purified, soluble plxn extracellular and cytosolic domains exhibit only weak homomeric interactions, suggesting a role for the plxn TM and juxtamembrane regions in homooligomerization. In this study, we consider a heptad repeat in the Danio rerio PlxnA3 cytosolic juxtamembrane domain (JM) for its ability to influence PlxnA3 homooligomerization in TM-domain containing constructs. Site-directed mutagenesis in conjunction with the AraTM assay and bioluminescent energy transfer (BRET²) suggest an interface involving a JM heptad repeat, in particular residue M1281, regulates PlxnA3 homomeric interactions when examined in constructs containing an ectodomain, TM and JM domain. In the presence of a neuropilin-2a co-receptor and semaphorin 3F ligand, disruption to PlxnA3 homodimerization caused by an M1281F mutation is eliminated, suggesting destabilization of the PlxnA3 homodimer in the JM is not sufficient to disrupt co-receptor complex formation. In contrast, enhanced homodimerization of PlxnA3 caused by mutation M1281L remains even in the presence of ligand semaphorin 3F and co-receptor neuropilin-2a. Consistent with this pattern of PlxnA3 dimerization in the presence of ligand and co-receptor, destabilizing mutations to PlxnA3 homodimerization (M1281F) are able to rescue motor patterning defects in sidetracked zebrafish embryos, whereas mutations that enhance PlxnA3 homodimerization (M1281L) are not. Collectively, our results indicate the JM heptad repeat, in particular residue M1281, forms a switchable interface that modulates both PlxnA3 homomeric interactions and signal transduction.

摘要

丛状蛋白(plxns)是跨膜(TM)受体,参与血管、淋巴管和神经元生长的导向以及癌症转移。丛状蛋白信号传导导致胞质GTP酶激活蛋白活性,先前的研究表明二聚化对丛状蛋白信号传导的激活很重要。纯化的可溶性丛状蛋白胞外和胞质结构域仅表现出微弱的同源相互作用,表明丛状蛋白的TM和近膜区域在同源寡聚化中起作用。在本研究中,我们研究了斑马鱼丛状蛋白A3(Danio rerio PlxnA3)胞质近膜结构域(JM)中的一个七肽重复序列,因其能够影响含TM结构域构建体中丛状蛋白A3的同源寡聚化。定点诱变结合AraTM分析和生物发光能量转移(BRET²)表明,一个涉及JM七肽重复序列,特别是残基M1281的界面,在含有胞外结构域、TM和JM结构域的构建体中检测时,调节丛状蛋白A3的同源相互作用。在存在神经纤毛蛋白-2a共受体和信号素3F配体的情况下,由M1281F突变引起的丛状蛋白A3同源二聚化的破坏被消除,这表明JM中丛状蛋白A3同源二聚体的不稳定不足以破坏共受体复合物的形成。相反,由突变M1281L引起的丛状蛋白A3同源二聚化增强即使在存在配体信号素3F和共受体神经纤毛蛋白-2a的情况下仍然存在。与这种在存在配体和共受体时丛状蛋白A3二聚化的模式一致,丛状蛋白A3同源二聚化的不稳定突变(M128F)能够挽救侧行斑马鱼胚胎中的运动模式缺陷,而增强丛状蛋白A3同源二聚化的突变(M1281L)则不能。总的来说,我们的结果表明JM七肽重复序列,特别是残基M1281,形成了一个可切换的界面,调节丛状蛋白A3的同源相互作用和信号转导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2683/4286236/968ab3cf9f7d/pone.0116368.g001.jpg

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