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主要利什曼原虫丙酰辅酶 A 羧化酶生物素羧基载体蛋白结构域的骨架分配及其与同源生物素蛋白连接酶的相互作用。

Backbone assignments of the biotin carboxyl carrier protein domain of Propionyl CoA carboxylase of Leishmania major and its interaction with its cognate Biotin protein ligase.

机构信息

National Institute of Immunology, JNU Campus, Aruna Asaf Ali Marg, New Delhi, 110067, India.

出版信息

Biomol NMR Assign. 2024 Dec;18(2):309-314. doi: 10.1007/s12104-024-10205-2. Epub 2024 Sep 23.

DOI:10.1007/s12104-024-10205-2
PMID:39313636
Abstract

Propionyl CoA carboxylase (PCC) is a multimeric enzyme composed of two types of subunits, α and β arranged in αβ stoichiometry. The α-subunit consists of an N-terminal carboxylase domain, a carboxyl transferase domains, and a C-terminal biotin carboxyl carrier protein domain (BCCP). The β-subunit is made up of an N- and a C- carboxyl transferase domain. During PCC catalysis, the BCCP domain plays a central role by transporting a carboxyl group from the α-subunit to the β-subunit, and finally to propionyl CoA carboxylase, resulting in the formation of methyl malonyl CoA. A point mutation in any of the subunits interferes with multimer assembly and function. Due to the association of this enzyme with propionic acidemia, a genetic metabolic disorder found in humans, PCC has become an enzyme of wide spread interest. Interestingly, unicellular eukaryotes like Leishmania also possess a PCC in their mitochondria that displays high sequence conservation with the human enzyme. Thus, to understand the function of this enzyme at the molecular level, we have initiated studies on Leishmania major PCC (LmPCC). Here we report chemical shift assignments of LmPCC BCCP domain using NMR. Conformational changes in LmPCC BCCP domain upon biotinylation, as well as upon interaction with its cognate biotinylating enzyme (Biotin protein ligase from L. major) have also been reported. Our studies disclose residues important for LmPCC BCCP interaction and function.

摘要

丙酰辅酶 A 羧化酶(PCC)是一种由两种类型的亚基组成的多聚体酶,以αβ化学计量比排列。α-亚基由 N 端羧化酶结构域、羧基转移酶结构域和 C 端生物素羧基载体蛋白结构域(BCCP)组成。β-亚基由 N-和 C-羧基转移酶结构域组成。在 PCC 催化过程中,BCCP 结构域通过将羧基从α-亚基转移到β-亚基,最终转移到丙酰辅酶 A 羧化酶,从而形成甲基丙二酰辅酶 A,发挥核心作用。任何亚基的点突变都会干扰多聚体的组装和功能。由于该酶与丙酸血症有关,丙酸血症是一种在人类中发现的遗传性代谢紊乱,因此 PCC 已成为广泛关注的酶。有趣的是,单细胞真核生物如利什曼原虫在其线粒体中也存在 PCC,与人类酶具有高度的序列保守性。因此,为了在分子水平上了解该酶的功能,我们已经开始对利什曼原虫 PCC(LmPCC)进行研究。在这里,我们报告了使用 NMR 对 LmPCC BCCP 结构域的化学位移分配。还报道了 LmPCC BCCP 结构域在生物素化和与其同源生物素连接酶(来自 L. major 的生物素蛋白连接酶)相互作用时的构象变化。我们的研究揭示了对 LmPCC BCCP 相互作用和功能很重要的残基。

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