Fgd5是一种具有rac1特异性的Rho GEF,可被金三羧酸选择性抑制

Q2 Biochemistry, Genetics and Molecular Biology
Small GTPases Pub Date : 2021-03-01 Epub Date: 2019-10-10 DOI:10.1080/21541248.2019.1674765
Sally Park, Yitian Guo, Judeah Negre, Jordane Preto, Cameron C Smithers, Abul Kalam Azad, Michael Overduin, Allan G Murray, Gary Eitzen
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引用次数: 0

摘要

Rho蛋白是控制细胞动力学、运动和形态变化的信号分子。它们被Rho鸟嘌呤核苷酸交换因子(Rho-GEFs)激活,该因子将上游信号转导为Rho介导的下游过程的激活。Fgd5是一种参与血管生成的Rho-GEF,其用于该过程的靶Rho蛋白与Cdc42活化有关。在这里,我们检查了纯化的Fgd5的功能,特别是它激活的Rho蛋白,并确定了酶活性所需的结构域。使用GEF酶分析,我们发现纯化的Fgd5在下拉和共免疫沉淀分析中显示出Rac1的优先激活和Rac1的直接结合。结构比较表明,Fgd5 DH结构域与Rac1 GEF TrioN高度相似,支持Fgd5作为Rac1 GEV的作用。通过表面等离子体共振筛选小分子文库来鉴定与纯化的Fgd5 DH-PH蛋白结合的化合物。进一步检查了11个配体抑制Fgd5-GEF酶活性和Rac1相互作用的能力。从这些研究中,我们发现化合物脑室羧酸和米托蒽醌二盐酸盐在较小程度上抑制了Fgd5-GEF对Rac1的激活及其相互作用。Aur对Rac1-GEF,TrioN的活性或结合没有影响,因此证明了选择性破坏Rho-GEF激活剂的可行性。缩写:a.a.:氨基酸;ATA:脑室羧酸;DH:Dbl同源性;多克:胞质分裂的独裁者;Fgd:面神经发育不良;GEF:鸟嘌呤核苷酸交换因子;GST:谷胱甘肽S-转移酶;LOPAC:药理学活性化合物库;PH:pleckstring同源性;PDB:蛋白质数据库;s.e.m.:平均值的标准误差;SPR:表面等离子体共振。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fgd5 is a Rac1-specific Rho GEF that is selectively inhibited by aurintricarboxylic acid.

Rho proteins are signalling molecules that control cellular dynamics, movement and morphological changes. They are activated by Rho guanine-nucleotide exchange factors (Rho GEFs) that transduce upstream signals into Rho-mediated activation of downstream processes. Fgd5 is a Rho GEF involved in angiogenesis and its target Rho protein for this process has been linked to Cdc42 activation. Here, we examined the function of purified Fgd5, specifically, which Rho proteins it activates and pinpoint the structural domains required for enzymatic activity. Using a GEF enzyme assay, we found that purified Fgd5 showed preferential activation of Rac1 and direct binding of Rac1 in pull-down and co-immunoprecipitation assays. Structural comparisons showed that the Fgd5 DH domain is highly similar to the Rac1 GEF, TrioN, supporting a role for Fgd5 as a Rac1 GEF. Compounds that bind to purified Fgd5 DH-PH protein were identified by screening a small molecule library via surface plasmon resonance. The effects of eleven ligands were further examined for their ability to inhibit the Fgd5 GEF enzymatic activity and Rac1 interaction. From these studies, we found that the compound aurintricarboxylic acid, and to a lesser extent mitoxantrone dihydrochloride, inhibited both Fgd5 GEF activation of Rac1 and their interaction. Aurintricarboxylic acid had no effect on the activity or binding of the Rac1 GEF, TrioN, thus demonstrating the feasibility of selectively disrupting Rho GEF activators. Abbreviations: a.a.: amino acid; ATA: aurintricarboxylic acid; DH: Dbl homology; DOCK: dictator of cytokinesis; Fgd: faciogenital dysplasia; GEF: guanine-nucleotide exchange factor; GST: glutathione S-transferase; LOPAC: library of pharmacologically active compounds; PH: pleckstrin homology; PDB: protein data bank; s.e.m.: standard error of the mean; SPR: surface plasmon resonance.

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Small GTPases
Small GTPases Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
6.10
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6
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