1] Program in Gene Expression and Regulation, Wistar Institute, Philadelphia, Pennsylvania, USA. [2] Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
Nat Struct Mol Biol. 2013 Sep;20(9):1098-105. doi: 10.1038/nsmb.2636. Epub 2013 Aug 4.
N-terminal acetylation is ubiquitous among eukaryotic proteins and controls a myriad of biological processes. Of the N-terminal acetyltransferases (NATs) that facilitate this cotranslational modification, the heterodimeric NatA complex has the most diversity for substrate selection and modifies the majority of all N-terminally acetylated proteins. Here, we report the X-ray crystal structure of the 100-kDa holo-NatA complex from Schizosaccharomyces pombe, in the absence and presence of a bisubstrate peptide-CoA-conjugate inhibitor, as well as the structure of the uncomplexed Naa10p catalytic subunit. The NatA-Naa15p auxiliary subunit contains 13 tetratricopeptide motifs and adopts a ring-like topology that wraps around the NatA-Naa10p subunit, an interaction that alters the Naa10p active site for substrate-specific acetylation. These studies have implications for understanding the mechanistic details of other NAT complexes and how regulatory subunits modulate the activity of the broader family of protein acetyltransferases.
N 端乙酰化在真核生物蛋白中普遍存在,并控制着无数的生物过程。在促进这种共翻译修饰的 N 端乙酰基转移酶(NATs)中,异源二聚体 NatA 复合物在底物选择方面具有最多的多样性,并修饰了大多数 N 端乙酰化的蛋白质。在这里,我们报告了来自酿酒酵母的全 100kDa 天然 NatA 复合物的 X 射线晶体结构,分别在不存在和存在双底物肽-CoA 缀合抑制剂的情况下,以及未复合的 Naa10p 催化亚基的结构。NatA-Naa15p 辅助亚基包含 13 个四肽基序,并采用环状拓扑结构,环绕 NatA-Naa10p 亚基,这种相互作用改变了 Naa10p 的活性位点,以进行底物特异性乙酰化。这些研究对于理解其他 NAT 复合物的机制细节以及调节亚基如何调节更广泛的蛋白质乙酰基转移酶家族的活性具有重要意义。