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首页> 外文期刊>Postharvest Biology and Technology >Knockdown of human N alpha-terminal acetyltransferase complex C leads to p53-dependent apoptosis and aberrant human Arl8b localization.
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Knockdown of human N alpha-terminal acetyltransferase complex C leads to p53-dependent apoptosis and aberrant human Arl8b localization.

机译:抑制人类Nα-末端乙酰转移酶复合物C导致p53依赖性细胞凋亡和异常的人类Arl8b定位。

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摘要

Protein N(alpha)-terminal acetylation is one of the most common protein modifications in eukaryotic cells. In yeast, three major complexes, NatA, NatB, and NatC, catalyze nearly all N-terminal acetylation, acetylating specific subsets of protein N termini. In human cells, only the NatA and NatB complexes have been described. We here identify and characterize the human NatC (hNatC) complex, containing the catalytic subunit hMak3 and the auxiliary subunits hMak10 and hMak31. This complex associates with ribosomes, and hMak3 acetylates Met-Leu protein N termini in vitro, suggesting a model in which the human NatC complex functions in cotranslational N-terminal acetylation. Small interfering RNA-mediated knockdown of NatC subunits results in p53-dependent cell death and reduced growth of human cell lines. As a consequence of hMAK3 knockdown, p53 is stabilized and phosphorylated and there is a significant transcriptional activation of proapoptotic genes downstream of p53. Knockdown of hMAK3 alters the subcellular localization of the Arf-like GTPase hArl8b, supporting that hArl8b is a hMak3 substrate in vivo. Taken together, hNatC-mediated N-terminal acetylation is important for maintenance of protein function and cell viability in human cells.
机译:蛋白Nα-末端乙酰化是真核细胞中最常见的蛋白修饰之一。在酵母中,三种主要的复合物NatA,NatB和NatC催化几乎所有N末端乙酰化,从而乙酰化蛋白质N末端的特定子集。在人类细胞中,仅描述了NatA和NatB复合物。我们在这里鉴定和表征人的NatC(hNatC)复合物,包含催化亚基hMak3和辅助亚基hMak10和hMak31。该复合物与核糖体缔合,hMak3在体外乙酰化Met-Leu蛋白N末端,提示了一种模型,其中人NatC复合物在共翻译N末端乙酰化中起作用。小干扰RNA介导的NatC亚基的敲低导致p53依赖性细胞死亡和人类细胞系生长减少。作为hMAK3敲除的结果,p53稳定并被磷酸化,并且p53下游的促凋亡基因有明显的转录激活。击倒hMAK3会改变Arf样GTP酶hArl8b的亚细胞定位,支持hArl8b是体内的hMak3底物。总之,hNatC介导的N末端乙酰化对于维持人类细胞中的蛋白质功能和细胞生存力非常重要。

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