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溶组织内阿米巴串联Ras超家族GTP酶EhRabX3野生型和快速水解突变体的晶体结构分析

Crystal Structure Analysis of Wild Type and Fast Hydrolyzing Mutant of EhRabX3, a Tandem Ras Superfamily GTPase from Entamoeba histolytica.

作者信息

Srivastava Vijay Kumar, Chandra Mintu, Saito-Nakano Yumiko, Nozaki Tomoyoshi, Datta Sunando

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal 462023, India.

Department of Parasitology, National Institute of Infectious Diseases Shinjuku-ku, Tokyo 162-8640, Japan.

出版信息

J Mol Biol. 2016 Jan 16;428(1):41-51. doi: 10.1016/j.jmb.2015.11.003. Epub 2015 Nov 10.

Abstract

The enteric protozoan parasite, Entamoeba histolytica, is the causative agent of amoebic dysentery, liver abscess and colitis in human. Vesicular trafficking plays a key role in the survival and virulence of the protozoan and is regulated by various Rab GTPases. EhRabX3 is a catalytically inefficient amoebic Rab protein, which is unique among the eukaryotic Ras superfamily by virtue of its tandem domain organization. Here, we report the crystal structures of GDP-bound fast hydrolyzing mutant (V71A/K73Q) and GTP-bound wild type EhRabX3 at 3.1 and 2.8Å resolutions, respectively. Though both G-domains possess "phosphate binding loop containing nucleoside triphosphate hydrolases fold", only the N-terminal domain binds to guanine nucleotide. The relative orientation of the N-terminal domain and C-terminal domain is stabilized by numerous inter-domain interactions. Compared to other Ras superfamily members, both the GTPase domains displayed large deviation in switch II perhaps due to non-conservative substitutions in this region. As a result, entire switch II is restructured and moved away from the nucleotide binding pocket, providing a rationale for the diminished GTPase activity of EhRabX3. The N-terminal GTPase domain possesses unusually large number of cysteine residues. X-ray crystal structure of the fast hydrolyzing mutant of EhRabX3 revealed that C39 and C163 formed an intra-molecular disulfide bond. Subsequent mutational and biochemical studies suggest that C39 and C163 are critical for maintaining the structural integrity and function of EhRabX3. Structure-guided functional investigation of cysteine mutants could provide the physiological implications of the disulfide bond and could allow us to design potential inhibitors for the better treatment of intestinal amebiasis.

摘要

肠道原生动物寄生虫溶组织内阿米巴是人类阿米巴痢疾、肝脓肿和结肠炎的病原体。囊泡运输在该原生动物的存活和毒力中起关键作用,并受多种Rab GTP酶调控。EhRabX3是一种催化效率低下的阿米巴Rab蛋白,因其串联结构域组织在真核Ras超家族中独一无二。在此,我们分别报告了GDP结合的快速水解突变体(V71A/K73Q)和GTP结合的野生型EhRabX3在3.1Å和2.8Å分辨率下的晶体结构。虽然两个G结构域都具有“含核苷三磷酸水解酶折叠的磷酸结合环”,但只有N端结构域与鸟嘌呤核苷酸结合。N端结构域和C端结构域的相对取向通过大量结构域间相互作用得以稳定。与其他Ras超家族成员相比,两个GTP酶结构域在开关II区域显示出较大偏差,这可能是由于该区域的非保守取代所致。结果,整个开关II发生重构并远离核苷酸结合口袋,这为EhRabX3的GTP酶活性降低提供了一个解释。N端GTP酶结构域具有异常大量的半胱氨酸残基。EhRabX3快速水解突变体的X射线晶体结构表明,C39和C163形成了分子内二硫键。随后的突变和生化研究表明,C39和C163对于维持EhRabX3的结构完整性和功能至关重要。对半胱氨酸突变体进行基于结构的功能研究可以揭示二硫键的生理意义,并使我们能够设计潜在的抑制剂以更好地治疗肠道阿米巴病。

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