Cluster Innovation Centre, University of Delhi, 110007, Delhi, India.
Department of Zoology, University of Delhi, 110007, Delhi, India.
Cell Biochem Biophys. 2024 Mar;82(1):223-233. doi: 10.1007/s12013-023-01201-9. Epub 2023 Dec 1.
The N-terminus of Histone H3 is proteolytically processed in aged chicken liver. A histone H3 N-terminus specific endopeptidase (named H3ase) has been purified from the nuclear extract of aged chicken liver. By sequencing and a series of biochemical methods including the demonstration of H3ase activity in bacterially expressed GDH, it was established that the H3ase activity was a moonlighting protease activity of glutamate dehydrogenase (GDH). However, the active site for the H3ase in the GDH remains elusive. Here, using cross-linking studies of the homogenously purified H3ase, we show that the GDH and the H3ase remain in the same native state. Further, the H3ase and GDH activities could be uncoupled by partial denaturation of GDH, suggesting strong evidence for the involvement of different active sites for GDH and H3ase activities. Through densitometry of the H3ase clipped H3 products, the H3ase activity was quantified and it was compared with the GDH activity of the chicken liver nuclear GDH. Furthermore, the H3ase mostly remained distributed in the perinuclear area as demonstrated by MNase digestion and immuno-localization of H3ase in chicken liver nuclei, as well as cultured mouse hepatocyte cells, suggesting that H3ase demonstrated regulated access to the chromatin. The present study thus broadly compares the H3ase and GDH activities of the chicken liver GDH.
组蛋白 H3 的 N 端在年老的鸡肝中被蛋白水解加工。一种组蛋白 H3 N 端特异性内肽酶(命名为 H3ase)已从年老鸡肝的核提取物中纯化出来。通过测序和一系列生化方法,包括在细菌表达的谷氨酸脱氢酶(GDH)中证明 H3ase 活性,确定 H3ase 活性是谷氨酸脱氢酶(GDH)的一种 moonlighting 蛋白酶活性。然而,GDH 中 H3ase 的活性位点仍然难以捉摸。在这里,我们使用均匀纯化的 H3ase 的交联研究表明,GDH 和 H3ase 仍处于相同的天然状态。此外,通过部分变性 GDH 可以将 H3ase 和 GDH 活性解偶联,这强烈表明 GDH 和 H3ase 活性涉及不同的活性位点。通过对 H3ase 切割的 H3 产物进行密度计分析,定量了 H3ase 活性,并将其与鸡肝核 GDH 的 GDH 活性进行了比较。此外,正如 MNase 消化和鸡肝核以及培养的小鼠肝细胞中 H3ase 的免疫定位所证明的那样,H3ase 主要分布在核周区,这表明 H3ase 对染色质的进入具有调控作用。因此,本研究广泛比较了鸡肝 GDH 的 H3ase 和 GDH 活性。