Interdisciplinary Research Center HALOmem, Charles Tanford Protein Center, Martin Luther University Halle-Wittenberg, Kurt-Mothes-Straße 3a, Halle/Saale, Germany.
Institute of Biochemistry and Biotechnology, Martin Luther University Halle-Wittenberg, Kurt-Mothes-Straße 3, Halle/Saale, Germany.
Nat Commun. 2021 Nov 26;12(1):6933. doi: 10.1038/s41467-021-27287-4.
Found across all kingdoms of life, 2-keto acid dehydrogenase complexes possess prominent metabolic roles and form major regulatory sites. Although their component structures are known, their higher-order organization is highly heterogeneous, not only across species or tissues but also even within a single cell. Here, we report a cryo-EM structure of the fully active Chaetomium thermophilum pyruvate dehydrogenase complex (PDHc) core scaffold at 3.85 Å resolution (FSC = 0.143) from native cell extracts. By combining cryo-EM with macromolecular docking and molecular dynamics simulations, we resolve all PDHc core scaffold interfaces and dissect the residing transacetylase reaction. Electrostatics attract the lipoyl domain to the transacetylase active site and stabilize the coenzyme A, while apolar interactions position the lipoate in its binding cleft. Our results have direct implications on the structural determinants of the transacetylase reaction and the role of flexible regions in the context of the overall 10 MDa PDHc metabolon architecture.
在所有生命王国中都发现了 2-酮酸脱氢酶复合物,它们具有重要的代谢作用,并形成主要的调节位点。尽管它们的组成结构是已知的,但它们的高级组织在不同物种或组织之间甚至在单个细胞内都存在高度的异质性。在这里,我们报告了来自天然细胞提取物的完全活性嗜热毛壳菌丙酮酸脱氢酶复合物(PDHc)核心支架的 3.85Å 分辨率的冷冻电镜结构(FSC = 0.143)。通过将冷冻电镜与大分子对接和分子动力学模拟相结合,我们解决了所有 PDHc 核心支架界面,并剖析了驻留的转乙酰基酶反应。静电吸引脂酰基结构域到转乙酰基酶活性位点,并稳定辅酶 A,而非极性相互作用将脂酰基辅酶 A 定位在其结合裂缝中。我们的结果对转乙酰基酶反应的结构决定因素以及在整体 10 MDa PDHc 代谢物架构背景下的柔性区域的作用具有直接影响。