Approximately 40% of the mammalian proteome undergoes N-terminal methionine excision and acetylation, mediated sequentially by methionine aminopeptidase (MetAP) and N-acetyltransferase A (NatA), respectively(1). Both modifications are strictly cotranslational and essential in higher eukaryotic organisms(1). The interaction, activity and regulation of these enzymes on translating ribosomes are poorly understood. Here we perform biochemical, structural and in vivo studies to demonstrate that the nascent polypeptide-associated complex(2,3) (NAC) orchestrates the action of these enzymes. NAC assembles a multienzyme complex with MetAP1 and NatA early during translation and pre-positions the active sites of both enzymes for timely sequential processing of the nascent protein. NAC further releases the inhibitory interactions from the NatA regulatory protein huntingtin yeast two-hybrid protein K(4,5) (HYPK) to activate NatA on the ribosome, enforcing cotranslational N-terminal acetylation. Our results provide a mechanistic model for the cotranslational processing of proteins in eukaryotic cells.
NAC guides a ribosomal multienzyme complex for nascent protein processing.
NAC引导核糖体多酶复合物进行新生蛋白质加工
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作者:Lentzsch Alfred M, Yudin Denis, Gamerdinger Martin, Chandrasekar Sowmya, Rabl Laurenz, Scaiola Alain, Deuerling Elke, Ban Nenad, Shan Shu-Ou
| 期刊: | Nature | 影响因子: | 48.500 |
| 时间: | 2024 | 起止号: | 2024 Sep;633(8030):718-724 |
| doi: | 10.1038/s41586-024-07846-7 | 研究方向: | 其它 |
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