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Yersinia pestis acetyltransferase-mediated dual acetylation at the serine and lysine residues enhances the auto-ubiquitination of ubiquitin ligase MARCH8 in human cells

机译:Yersinia Pestis乙酰转移酶介导的丝氨酸和赖氨酸残基的双乙酰化增强了遍毒蛋白连接酶3月8日在人细胞中的自我泛酸化合物

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摘要

Lysine acetylation is known as a post translational modification (PTM) by histone acetyltransferases (HAT) that modifies histones and non-histone proteins to regulate gene expression. Serine acetylation, however, is reported in mammalian hosts by serine acetyltransferase of Yersinia pestis (YopJ) during infection. The protein target and cellular function of bacterial YopJ in mammalian systems are not fully addressed. Here we report dual acetylation at the serine and lysine residues by transiently expressed serine acetyltransferase YopJ mimicking Y. pestis infection in HeLa cells. Using shotgun proteomics followed by label-free quantification, we demonstrate an increase of dual acetylation in YopJ transfected human cells, including 10 Ser- (YopJ/non-YopJ 1.3-fold, p = 0.02) and 8 Lys- (YopJ/non-YopJ 3.5-fold, p = 0.00003) acetylation sites. Specifically, YopJ expression augments acetylation of membrane-associated E3 ubiquitin ligase MARCH8 at the serine residue Sac44, Sac71 and Sac253, and the lysine residue Kac247 and Kac252. YopJ-mediated Ser- and Lys-acetylation of MARCH8 is further confirmed by Western blotting using the specific antibodies against MARCH8 Sac71 and pan-acetyl lysine. Functional study demonstrates that YopJ-mediated Ser- and Lys-acetylation affects the auto-ubiquitination of MARCH8. The mutant C172A of YopJ previously shown to abolish the acetyltransferase activity also reduces Ser- and Lys-acetylation and diminishes the auto-ubiquitination of MARCH8. In support, MARCH8 is indeed acetylated at serine and lysine in vitro by purified YopJ but the activity is reduced by the C172A mutant in YopJ. Our study provides evidence that bacterial serine acetyltransferase YopJ mediates Ser- and Lys-acetylation and affects auto-ubiquitination of ubiquitin ligase MARCH8 in human cells.
机译:赖氨酸乙酰化被称为后翻版改性(PTM)的组氨酸乙酰转移酶(帽子),其改变组蛋白和非组蛋白蛋白来调节基因表达。然而,丝氨酸乙酰化在感染期间通过Yersinia Pestis(YoPJ)的丝氨酸乙酰转移酶在哺乳动物主体中报道。哺乳动物系统中细菌yopj的蛋白质靶标和细胞功能没有完全解决。在这里,我们通过瞬时表达丝氨酸乙酰转移酶Yopj在Hela细胞中模拟丝氨酸乙酰转移酶Yopj报告丝氨酸和赖氨酸残基的双乙酰化。使用霰弹枪蛋白质组学随后是无标记的定量,我们证明了yopj转染的人细胞中双乙酰化的增加,包括10个Ser-(yopj /非yopj 1.3折,p = 0.02)和8个lys-(yopj /非yopj 3.5折,p = 0.00003)乙酰化位点。具体地,yopj表达增强膜相关的E3泛素连接酶3月8日,SAC71和SAC253,以及赖氨酸残基KaC247和KaC252的乙酰化。 yopj介导的3月8日介导的Ser-and-乙酰化,通过使用针对3月8日SAC71和粉末乙酰赖氨酸的特异性抗体进行蛋白质印迹进一步证实。功能性研究表明,yopj介导的Ser-and-乙酰化影响了3月8日的自我泛酸。 yopj的突变体C172a以前所示以消除乙酰转移酶活性也降低了Ser-和乙酰化并减少了3月8日的自我泛酸。在支持下,3月8日确实在纯化的yopj中体外乙酰化,但通过yopj中的C172a突变体减少了活性。我们的研究提供了有证据表明,细菌丝氨酸乙酰转移酶Yopj介导Ser-and Lys-乙酰化,并影响人体细胞中泛素连接酶的自我泛酸化。

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