首页> 美国卫生研究院文献>Biochemical Journal >Reconstitution of mammalian pyruvate dehydrogenase and 2-oxoglutarate dehydrogenase complexes: analysis of protein X involvement and interaction of homologous and heterologous dihydrolipoamide dehydrogenases.
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Reconstitution of mammalian pyruvate dehydrogenase and 2-oxoglutarate dehydrogenase complexes: analysis of protein X involvement and interaction of homologous and heterologous dihydrolipoamide dehydrogenases.

机译:哺乳动物丙酮酸脱氢酶和2-氧戊二酸脱氢酶复合物的重建:蛋白质X参与和同源和异源二氢脂酰胺脱氢酶相互作用的分析。

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摘要

Optimal conditions for rapid and efficient reconstitution of pyruvate dehydrogenase complex (PDC) activity are demonstrated by using an improved method for the dissociation of the multienzyme complex into its constituent E1 (substrate-specific 2-oxoacid decarboxylase) and E3 (dihydrolipoamide dehydrogenase) components and isolated E2/X (where E2 is dihydrolipoamide acyltransferase) core assembly. Selective cleavage of the protein X component of the purified E2/X core with the proteinase arg C decreases the activity of the reconstituted complex to residual levels (i.e. 8-12%); however, significant recovery of reconstitution is achieved on addition of a large excess (i.e. 50-fold) of parent E3. N-terminal sequence analysis of the truncated 35,000-M(r) protein X fragment locates the site of cleavage by arg C at the extreme N-terminal boundary of a putative E3-binding domain and corresponds to the release of a 15,000-M(r) N-terminal fragment comprising both the lipoyl and linker sequences. In native PDC this region of protein X is shown to be partly protected from proteolytic attack by the presence of E3. Recovery of complex activity in the presence of excess E3 after arg C treatment is thought to result from low-affinity interactions with the partly disrupted subunit-binding domain on X and/or the intact analogous subunit binding domain on E2. Contrasting recoveries for arg C-modified E2/X/E1 core, and untreated E2/E1 core of the 2-oxoglutarate dehydrogenase complex, reconstituted with excess bovine heart E3, pig heart E3 or yeast E3 point to subtle differences in subunit interactions with heterologous E3s and offer an explanation for the inability of previous investigators to achieve restoration of PDC function after selective proteolysis of the protein X component.
机译:通过使用一种改进的方法将多酶复合物解离成其成分E1(底物特异性2-氧代酸脱羧酶)和E3(二氢脂酰胺脱氢酶)成分,可以证明快速有效地重组丙酮酸脱氢酶复合物(PDC)活性的最佳条件。分离的E2 / X(其中E2是二氢脂酰胺酰基转移酶)核心组件。用蛋白酶arg C对纯化的E2 / X核心蛋白X组分的选择性切割将重组复合物的活性降低到残留水平(即8-12%);但是,通过添加大量过量(即50倍)的亲本E3,可以显着恢复复原。截短的35,000-M(r)蛋白X片段的N端序列分析将arg C切割的位点定位在推定的E3结合域的N端极端边界处,并对应于15,000-M( r)同时包含脂酰基和接头序列的N-末端片段。在天然PDC中,蛋白质X的这一区域显示已被E3的存在部分保护,免受蛋白水解攻击。 arg C处理后,在过量E3存在下,复杂活性的恢复被认为是由于与X上部分破坏的亚基结合域和/或E2上完整的类似亚基结合域的低亲和力相互作用引起的。用过量牛心E3,猪心E3或酵母E3重建的2-氧戊二酸脱氢酶复合物的arg C修饰的E2 / X / E1核心和未经处理的E2 / E1核心的相对回收率表明,与异源的亚基相互作用的细微差异E3s,并为以前的研究人员在蛋白X成分选择性蛋白水解后无法恢复PDC功能提供了解释。

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