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辅酶 A 结合位点诱导跨蛋白家族的近端酰化。

Coenzyme A binding sites induce proximal acylation across protein families.

机构信息

Buck Institute for Research on Aging, Novato, CA, 94945, USA.

Vaccine and Infectious Disease Division, Fred Hutch Cancer Center, Seattle, WA, USA.

出版信息

Sci Rep. 2023 Mar 28;13(1):5029. doi: 10.1038/s41598-023-31900-5.

Abstract

Lysine Nɛ-acylations, such as acetylation or succinylation, are post-translational modifications that regulate protein function. In mitochondria, lysine acylation is predominantly non-enzymatic, and only a specific subset of the proteome is acylated. Coenzyme A (CoA) can act as an acyl group carrier via a thioester bond, but what controls the acylation of mitochondrial lysines remains poorly understood. Using published datasets, here we found that proteins with a CoA-binding site are more likely to be acetylated, succinylated, and glutarylated. Using computational modeling, we show that lysine residues near the CoA-binding pocket are highly acylated compared to those farther away. We hypothesized that acyl-CoA binding enhances acylation of nearby lysine residues. To test this hypothesis, we co-incubated enoyl-CoA hydratase short chain 1 (ECHS1), a CoA-binding mitochondrial protein, with succinyl-CoA and CoA. Using mass spectrometry, we found that succinyl-CoA induced widespread lysine succinylation and that CoA competitively inhibited ECHS1 succinylation. CoA-induced inhibition at a particular lysine site correlated inversely with the distance between that lysine and the CoA-binding pocket. Our study indicated that CoA acts as a competitive inhibitor of ECHS1 succinylation by binding to the CoA-binding pocket. Together, this suggests that proximal acylation at CoA-binding sites is a primary mechanism for lysine acylation in the mitochondria.

摘要

赖氨酸 Nɛ-酰化,如乙酰化或琥珀酰化,是一种调节蛋白质功能的翻译后修饰。在线粒体中,赖氨酸酰化主要是非酶促的,并且只有特定的蛋白质组子集被酰化。辅酶 A (CoA) 可以通过硫酯键作为酰基载体,但线粒体赖氨酸酰化的调控机制仍知之甚少。利用已发表的数据集,我们发现具有 CoA 结合位点的蛋白质更容易被乙酰化、琥珀酰化和戊二酰化。通过计算建模,我们表明与远离 CoA 结合口袋的赖氨酸残基相比,靠近 CoA 结合口袋的赖氨酸残基高度酰化。我们假设酰基辅酶 A 结合增强了附近赖氨酸残基的酰化。为了验证这一假设,我们将 CoA 结合的线粒体蛋白烯酰 CoA 水合酶短链 1 (ECHS1) 与琥珀酰 CoA 和 CoA 共同孵育。通过质谱分析,我们发现琥珀酰 CoA 诱导了广泛的赖氨酸琥珀酰化,而 CoA 竞争性抑制了 ECHS1 的琥珀酰化。特定赖氨酸位点的 CoA 诱导抑制与该赖氨酸与 CoA 结合口袋之间的距离呈反比。我们的研究表明 CoA 通过与 CoA 结合口袋结合,作为 ECHS1 琥珀酰化的竞争性抑制剂发挥作用。总之,这表明 CoA 结合位点的邻近酰化是线粒体中赖氨酸酰化的主要机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/105b/10050154/0f6d51f070fe/41598_2023_31900_Fig1_HTML.jpg

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