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Molecular mechanism for regulation of the human mitochondrial branched-chain alpha-ketoacid dehydrogenase complex by phosphorylation

机译:通过磷酸化调节人线粒体支链α-酮酸脱氢酶复合物的分子机制

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摘要

The human mitochondrial branched-chain a-ketoacid dehydrogenase complex (BCKDC) is a 4 MDa macromolecular machine comprising three catalytic components (E1b, E2b, and E3), a kinase, and a phosphatase. The BCKDC overall activity is tightly regulated by phosphorylation in response to hormonal and dietary stimuli. We report that phosphorylation of Ser292-alpha in the E1b active site channel results in an order-to-disorder transition of the conserved phosphorylation loop carrying the phosphoryl serine. The conformational change is triggered by steric clashes of the phosphoryl group with invariant His291-alpha that serves as an indispensable anchor for the phosphorylation loop through bound thiamin diphosphate. Phosphorylation of Ser292-alpha does not severely impede the E1b-dependent decarboxylation of alpha-ketoacids. However, the disordered loop conformation prevents phosphorylated E1b from binding the E2b lipoyl-bearing domain, which effectively shuts off the E1b-catalyzed reductive acylation reaction and therefore completely inactivates BCKDC. This mechanism provides a paradigm for regulation of mitochondrial alpha-ketoacid dehydrogenase complexes by phosphorylation.
机译:人线粒体支链α-酮酸脱氢酶复合物(BCKDC)是一个4 MDa的大分子机器,包含三个催化成分(E1b,E2b和E3),一个激酶和一个磷酸酶。 BCKDC的总体活性受激素和饮食刺激的磷酸化作用严格调节。我们报告说,E1b活性位点通道中Ser292-alpha的磷酸化导致保守的磷酸化环携带磷酸丝氨酸的有序到无序过渡。构象变化是由磷酸酯基与不变的His291-alpha发生的空间碰撞触发的,后者通过结合的硫胺素二磷酸酯作为磷酸化环的必不可少的锚。 Ser292-α的磷酸化不会严重阻碍α-酮酸的E1b依赖性脱羧。但是,无序的环构象可防止磷酸化的E1b结合带有E2b脂酰的结构域,从而有效地关闭了E1b催化的还原性酰化反应,因此使BCKDC完全失活。该机制提供了通过磷酸化调节线粒体α-酮酸脱氢酶复合物的范例。

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