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首页> 外文期刊>Journal of Molecular Biology >Structural determinants of post-translational modification and catalytic specificity for the lipoyl domains of the pyruvate dehydrogenase multienzyme complex of Escherichia coli.
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Structural determinants of post-translational modification and catalytic specificity for the lipoyl domains of the pyruvate dehydrogenase multienzyme complex of Escherichia coli.

机译:翻译后修饰的结构决定因素和大肠杆菌丙酮酸脱氢酶多酶复合物的脂酰结构域的催化特异性。

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摘要

The lipoyl domains of the dihydrolipoyl acyltransferase (E2p, E2o) components of the pyruvate and 2-oxoglutarate dehydrogenase multienzyme complexes are specifically recognised by their cognate 2-oxo acid decarboxylase (E1p, E1o). A prominent surface loop links the first and second beta-strands in all lipoyl domains, close in space to the lipoyl-lysine beta-turn. This loop was subjected to various modifications by directed mutagenesis of a sub-gene encoding a lipoyl domain of Escherichia coli E2p. Deletion of the loop (four residues) rendered the domain incapable of reductive acetylation by E. coli E1p in the presence of pyruvate, but insertion of a new loop (six residues) corresponding to that in the E2o lipoyl domain partly restored this ability, albeit with a much lower rate. However, the modified domain remained unable to undergo reductive succinylation by E1o in the presence of 2-oxoglutarate. Additional exchange of the two residues on the C-terminal side of the loop (V14A, E15T) had no effect. Insertion of a different four-residue loop also restored a limited ability to undergo reductive acetylation, but still significantly less than that of the wild-type domain. Exchanging the residue on the N-terminal side of the lipoyl-lysine beta-turn in the E2p and E2o domains (G39T), both singly and in conjunction with the loop exchange, had no effect on the ability of the E2p domain to be reductively acetylated but did confer a slight increase in susceptibility to reductive succinylation. All mutant E2p domains, apart from that with the loop deletion (LD), were readily lipoylated in vitro by E. coli lipoate protein ligase A; the E2p LD mutant could be lipoylated only at a significantly lower rate. Likewise, this domain exhibited 1D and 2D NMR spectra characteristic of a partially folded protein, whereas the spectra of mutants with modified loops were similar to those of the wild-type domain. The surface loop is evidently important to the structural integrity of the domain and may help to stabilize the thioester bond linking the acyl group to the reduced lipoyl-lysine swinging arm as part of the catalytic mechanism. Recognition of the lipoyl domain by its partner E1 appears to be a complex process and not attributable to any single determinant on the domain. Copyright 2000 Academic Press.
机译:丙酮酸和2-氧代戊二酸脱氢酶多酶复合物的二氢脂酰酰基转移酶(E2p,E20)组分的脂酰结构域被它们的同源2-氧代酸脱羧酶(E1p,E10)特异性地识别。一个显着的表面环连接所有脂酰结构域中的第一和第二个β链,在空间上与脂酰赖氨酸的β-转角接近。通过直接诱变编码大肠杆菌E2p的脂酰结构域的亚基因对该环进行各种修饰。删除环(四个残基)使该域在丙酮酸存在下无法被大肠杆菌E1p还原乙酰化,但是插入一个新环(六个残基)对应于E2o脂酰结构域中的环,尽管可以部分恢复该能力。率要低得多。然而,在2-氧代戊二酸的存在下,修饰的结构域仍然不能通过E10进行还原性琥珀酰化。环的C端侧(V14A,E15T)的两个残基的额外交换没有效果。插入不同的四个残基的环也恢复了有限的进行还原性乙酰化的能力,但仍显着小于野生型结构域。单独和结合环交换在E2p和E2o域(G39T)中交换脂酰赖氨酸β-转角N端侧的残基对E2p域还原性的能力没有影响乙酰化,但确实使还原性琥珀酰化的敏感性略有增加。除了具有环缺失(LD)的那些外,所有突变的E2p结构域都容易在体外被大肠杆菌硫辛酸脂蛋白连接酶A脂化。 E2p LD突变体只能以低得多的比率进行脂酰化。同样,该结构域表现出部分折叠蛋白质的1D和2D NMR光谱特征,而具有修饰环的突变体的光谱与野生型结构域的光谱相似。表面环显然对结构域的结构完整性很重要,作为催化机理的一部分,表面环可能有助于稳定连接酰基与还原的脂酰赖氨酸摆动臂的硫酯键。通过其配偶体E1识别脂酰结构域似乎是一个复杂的过程,并且不能归因于该域上的任何单一决定簇。版权所有2000学术出版社。

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