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The Thermoplasma acidophilum LplA-LplB Complex Defines a New Class of Bipartite Lipoate-protein Ligases

机译:嗜酸嗜热菌LplA-LplB复杂定义了新的一类脂蛋白-蛋白质二联体

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摘要

Lipoic acid is a covalently bound cofactor found throughout the domains of life that is required for aerobic metabolism of 2-oxoacids and for C1 metabolism. Utilization of exogenous lipoate is catalyzed by a ligation reaction that proceeds via a lipoyl-adenylate intermediate to attach the cofactor to the ϵ-amino group of a conserved lysine residue of protein lipoyl domains. The lipoyl ligases of demonstrated function have a large N-terminal catalytic domain and a small C-terminal accessory domain. Half of the members of the LplA family detected in silico have only the large catalytic domain. Two x-ray structures of the Thermoplasma acidophilum LplA structure have been reported, although the protein was reported to lack ligase activity. McManus et al. (McManus, E., Luisi, B. F., and Perham, R. N. (2006) J. Mol. Biol. 356, 625–637) hypothesized that the product of an adjacent gene was also required for ligase activity. We have shown this to be the case and have named the second protein, LplB. We found that complementation of Escherichia coli strains lacking lipoate ligase with T. acidophilum LplA was possible only when LplB was also present. LplA had no detectable ligase activity in vitro in the absence of LplB. Moreover LplA and LplB were shown to interact and were purified as a heterodimer. LplB was required for lipoyl-adenylate formation but was not required for transfer of the lipoyl moiety of lipoyl-adenylate to acceptor proteins. Surveys of sequenced genomes show that most lipoyl ligases of the kingdom Archaea are heterodimeric. We propose that the presence of an accessory domain provides a diagnostic to distinguish lipoyl ligase homologues from other members of the lipoate/biotin attachment enzyme family.
机译:硫辛酸是在整个生命域中发现的共价结合的辅因子,是2-氧代酸的有氧代谢和C1代谢所必需的。外源性硫辛酸酯的利用通过经由脂酰-腺苷酸酯中间体进行的连接反应来催化,以使辅因子附着于蛋白质脂酰结构域的保守赖氨酸残基的α-氨基。证明的功能的脂酰连接酶具有大的N末端催化结构域和小的C末端辅助结构域。在计算机中检测到的LplA家族成员的一半只有大的催化结构域。尽管据报道该蛋白缺乏连接酶活性,但已报道了嗜酸嗜热丝菌LplA结构的两个X射线结构。 McManus等。 (McManus,E.,Luisi,B.F。和Perham,R.N。(2006)J.Mol.Biol.356,625-637)假设,连接酶活性也需要相邻基因的产物。我们已经证明是这种情况,并命名了第二种蛋白质LplB。我们发现,只有当存在LplB时,缺乏嗜酸乳杆菌LplA的缺乏脂酸酯连接酶的大肠杆菌菌株才可能互补。在不存在LplB的情况下,LplA在体外没有可检测的连接酶活性。此外,显示LplA和LplB相互作用并且被纯化为异二聚体。 LplB是脂酰-腺苷酸形成所必需的,而脂酰-腺苷酸的脂酰部分向受体蛋白的转移不是必需的。对测序的基因组进行的调查显示,古细菌界的大多数脂酰连接酶是异二聚体。我们提出,辅助结构域的存在提供了一种诊断方法,以区分脂酰连接酶同源物与脂酸酯/生物素附着酶家族的其他成员。

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