Gcn5 is a conserved acetyltransferase that regulates transcription by acetylating the N-terminal tails of histones. Motivated by recent studies identifying a chemically diverse array of lysine acyl modifications in vivo, the acyl-chain specificity of the acetyltransferase human Gcn5 (Gcn5L2) was examined. Whereas Gcn5L2 robustly catalyzes lysine acetylation, the acyltransferase activity of Gcn5L2 becomes progressively weaker with increasing acyl-chain length. To understand how Gcn5 discriminates between different acyl-CoA molecules, structures of the catalytic domain of human Gcn5L2 bound to propionyl-CoA and butyryl-CoA were determined. Although the active site of Gcn5L2 can accommodate propionyl-CoA and butyryl-CoA without major structural rearrangements, butyryl-CoA adopts a conformation incompatible with catalysis that obstructs the path of the incoming lysine residue and acts as a competitive inhibitor of Gcn5L2 versus acetyl-CoA. These structures demonstrate how Gcn5L2 discriminates between acyl-chain donors and explain why Gcn5L2 has weak activity for acyl moieties that are larger than an acetyl group.
Structural basis for acyl-group discrimination by human Gcn5L2.
人类 Gcn5L2 酰基识别的结构基础
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作者:Ringel Alison E, Wolberger Cynthia
| 期刊: | Acta Crystallographica Section D-Structural Biology | 影响因子: | 3.800 |
| 时间: | 2016 | 起止号: | 2016 Jul;72(Pt 7):841-8 |
| doi: | 10.1107/S2059798316007907 | 种属: | Human |
| 研究方向: | 其它 | ||
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