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棕色固氮菌丙酮酸脱氢酶复合体中二氢硫辛酰转乙酰基酶组分(E2p)的定点诱变。外周组分E1p和E3的结合。

Site-directed mutagenesis of the dihydrolipoyl transacetylase component (E2p) of the pyruvate dehydrogenase complex from Azotobacter vinelandii. Binding of the peripheral components E1p and E3.

作者信息

Schulze E, Westphal A H, Boumans H, de Kok A

机构信息

Department of Biochemistry, Agricultural University, Wageningen, The Netherlands.

出版信息

Eur J Biochem. 1991 Dec 18;202(3):841-8. doi: 10.1111/j.1432-1033.1991.tb16441.x.

Abstract

Site-directed mutagenesis was performed in the protease-sensitive region, between the lipoyl and catalytic domains and in the catalytic domain, of the dihydrolipoyl transacetylase component (E2p) of the pyruvate dehydrogenase complex from Azotobacter vinelandii. The interaction of the mutated enzymes with the peripheral components pyruvate dehydrogenase (E1p) and lipoamide dehydrogenase (E3) was studied by gel filtration experiments, analytical ultracentrifugation and reconstitution of the pyruvate dehydrogenase complex. Upon binding of peripheral components, the 24-subunit core of A. vinelandii wild-type E2p dissociates into tetramers. Four E1p or E3 dimers can bind to a tetramer. Binding is mutually exclusive, resulting in an active complex containing one E3 and three E1p dimers. Large deletions of the protease-sensitive region of E2p resulted in a total loss of the E1p and E3 binding. A small deletion (delta P361-R362) or the point mutation K367Q in the protease-sensitive region did not influence E3 binding, but affected E1p binding strongly, although with excess E1p almost complete reconstitution was reached. For E2p with the point mutation R416D in the N-terminal region of the catalytic domain only 16% overall activity could be measured in reconstituted complexes. This is due to a very weak E1p/E2p interaction, whereas the E3 binding was not affected. The point mutation R416D did not influence the catalytic activity of E2p, although a function for this residue in the formation of the active site was predicted from amino acid similarities with chloramphenicol acetyltransferase type III from Escherichia coli. Deletion of the complete Ala + Pro-rich sequence between the protease-sensitive region and the catalytic domain did not affect the enzymological properties of E2p, nor the affinity for E1p or E3. A further deletion of 20 N-terminal residues from the catalytic domain destroyed the E2p activity. From gel filtration experiments it was concluded that the quaternary structure was unaffected, as was E3 binding. E1p binding was lost and, in contrast to the wild-type enzyme, no dissociation of the core upon addition of E3 was observed. This mutant enzyme possesses, like E. coli E2p, six E3 binding sites and clearly shows that interaction of E3 or E1p with the E1p sites and dissociation are linked processes. It is concluded that the binding site for E3 is located on the N-terminal part of the protease-sensitive region. In contrast, the binding site for E1p consists of two regions, one located on the protease-sensitive region and one of the catalytic domain. These regions are separated by a flexible sequence of about 20 amino acids.

摘要

对来自棕色固氮菌的丙酮酸脱氢酶复合体中二氢硫辛酰转乙酰基酶组分(E2p)的蛋白酶敏感区域、硫辛酰结构域和催化结构域之间以及催化结构域进行了定点诱变。通过凝胶过滤实验、分析超速离心和丙酮酸脱氢酶复合体的重组,研究了突变酶与外周组分丙酮酸脱氢酶(E1p)和硫辛酰胺脱氢酶(E3)的相互作用。在外周组分结合后,棕色固氮菌野生型E2p的24亚基核心解离成四聚体。四个E1p或E3二聚体可以结合到一个四聚体上。结合是相互排斥的,导致形成一个含有一个E3和三个E1p二聚体的活性复合体。E2p蛋白酶敏感区域的大量缺失导致E1p和E3结合完全丧失。蛋白酶敏感区域的一个小缺失(δP361-R362)或点突变K367Q不影响E3结合,但强烈影响E1p结合,尽管在过量E1p存在下几乎达到了完全重组。对于催化结构域N端区域具有点突变R416D的E2p,在重组复合体中只能测得16%的总活性。这是由于E1p/E2p相互作用非常弱,而E3结合不受影响。点突变R416D不影响E2p的催化活性,尽管根据与大肠杆菌氯霉素乙酰转移酶III型的氨基酸相似性预测该残基在活性位点形成中起作用。蛋白酶敏感区域和催化结构域之间富含丙氨酸+脯氨酸的完整序列的缺失不影响E2p的酶学性质,也不影响其对E1p或E3的亲和力。催化结构域进一步缺失20个N端残基破坏了E2p活性。从凝胶过滤实验得出结论,四级结构未受影响,E3结合也是如此。E1p结合丧失,与野生型酶不同,加入E3后未观察到核心解离。这种突变酶与大肠杆菌E2p一样,具有六个E3结合位点,清楚地表明E3或E1p与E1p位点的相互作用和解离是相关联的过程。得出结论,E3的结合位点位于蛋白酶敏感区域的N端部分。相反,E1p的结合位点由两个区域组成,一个位于蛋白酶敏感区域,另一个位于催化结构域。这些区域由大约20个氨基酸的柔性序列隔开。

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