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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Malonyl-CoA: acyl carrier protein transacylase from Helicobacter pylori: Crystal structure and its interaction with acyl carrier protein.
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Malonyl-CoA: acyl carrier protein transacylase from Helicobacter pylori: Crystal structure and its interaction with acyl carrier protein.

机译:丙二酰辅酶A:来自幽门螺杆菌的酰基载体蛋白转酰基转移酶:晶体结构及其与酰基载体蛋白的相互作用。

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摘要

Malonyl-CoA: acyl carrier protein transacylase (MCAT) is a critical enzyme responsible for the transfer of the malonyl moiety to holo-acyl carrier protein (ACP) forming the malonyl-ACP intermediates in the initiation step of type II fatty acid synthesis (FAS II) in bacteria. MCAT has been considered as an attractive drug target in the discovery of antibacterial agents. In this study, the crystal structure of MCAT from Helicobacter pylori (Hp) at 2.5 angstroms resolution is reported, and the interaction of HpMCAT with HpACP is extensively investigated by using computational docking, GST-pull-down, and surface plasmon resonance (SPR) technology-based assays. The crystal structure results reveal that HpMCAT has a compact folding composed of a large subdomain with a similar core as in alpha/beta hydrolases, and a similar ferredoxin-like small subdomain as in acylphosphatases. The docking result suggests two positively charged areas near the entrance of the active site of HpMCAT as the ACP-binding region. Binding assay research shows that HpMCAT demonstrates a moderately binding ability against HpACP. The solved 3D structure of HpMCAT is expected to supply useful information for the structure-based discovery of novel inhibitors against MCAT, and the quantitative study of HpMCAT interaction with HpACP is hoped to give helpful hints in the understanding of the detailed catalytic mechanisms for HpMCAT.
机译:丙二酰辅酶A:酰基载体蛋白转酰酶(MCAT)是一种关键酶,负责在II型脂肪酸合成(FAS)的起始步骤中将丙二酰部分转移至形成丙二酰ACP中间体的全酰基载体蛋白(ACP) II)在细菌中。在发现抗菌剂中,MCAT被认为是有吸引力的药物靶标。在这项研究中,报道了幽门螺杆菌(Hp)的MCAT的晶体结构,分辨率为2.5埃,并通过计算对接,GST下拉和表面等离振子共振(SPR)广泛研究了HpMCAT与HpACP的相互作用。基于技术的分析。晶体结构结果表明,HpMCAT具有一个紧凑的折叠结构,该折叠结构包括一个大的亚结构域,其核心与α/β水解酶相似,而铁氧还蛋白样的小亚结构域与酰基磷酸酶相似。对接结果表明,HpMCAT活性位点入口附近有两个带正电的区域,作为ACP结合区。结合测定研究表明,HpMCAT表现出对HpACP的中等结合能力。有望解决的HpMCAT 3D结构将为基于结构的MCAT抑制剂的发现提供有用的信息,并且希望HpMCAT与HpACP相互作用的定量研究可为理解HpMCAT的详细催化机制提供有益的提示。

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