Transcription and Disease Laboratory, Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore- 560064, India.
J Biochem. 2024 Feb 25;175(2):205-213. doi: 10.1093/jb/mvad088.
TFIIIC is a multi-subunit complex required for tRNA transcription by RNA polymerase III. Human TFIIIC holo-complex possesses lysine acetyltransferase activity that aids in relieving chromatin-mediated repression for RNA polymerase III-mediated transcription and chromatin assembly. Here we have characterized the acetyltransferase activity of the largest and DNA-binding subunit of TFIIIC complex, TFIIIC220. Purified recombinant human TFIIIC220 acetylated core histones H3, H4 and H2A in vitro. Moreover, we have identified the putative catalytic domain of TFIIIC220 that efficiently acetylates core histones in vitro. Mutating critical residues of the putative acetyl-CoA binding 'P loop' drastically reduced the catalytic activity of the acetyltransferase domain. Further analysis showed that the knockdown of TFIIIC220 in mammalian cell lines dramatically reduces global H3K18 acetylation level, which was rescued by overexpression of the putative acetyltransferase domain of human TFIIIC220. Our findings indicated a possibility of a crucial role for TFIIIC220 in maintaining acetylation homeostasis in the cell.
TFIIIC 是一种多亚基复合物,是 RNA 聚合酶 III 转录 tRNA 所必需的。人源 TFIIIC 全酶复合物具有赖氨酸乙酰转移酶活性,有助于缓解 RNA 聚合酶 III 介导的转录和染色质组装过程中染色质介导的抑制。在这里,我们对 TFIIIC 复合物中最大的和 DNA 结合亚基 TFIIIC220 的乙酰转移酶活性进行了表征。纯化的重组人源 TFIIIC220 在体外可乙酰化核心组蛋白 H3、H4 和 H2A。此外,我们还鉴定了 TFIIIC220 的假定催化结构域,该结构域在体外能有效地乙酰化核心组蛋白。突变假定的乙酰辅酶 A 结合“P 环”中的关键残基,大大降低了乙酰转移酶结构域的催化活性。进一步的分析表明,在哺乳动物细胞系中敲低 TFIIIC220 会显著降低全局 H3K18 乙酰化水平,而过表达人源 TFIIIC220 的假定乙酰转移酶结构域可挽救这一现象。我们的发现表明,TFIIIC220 在维持细胞内乙酰化平衡方面可能具有重要作用。