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Physiological Importance and Identification of Novel Targets for the N-Terminal Acetyltransferase NatB

机译:生理重要性和N末端乙酰转移酶NatB的新目标的鉴定。

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The N-terminal acetyltransferase NatB in Saccharomyces cerevisiae consists of the catalytic subunit Nat3p and the associated subunit Mdm20p. We here extend our present knowledge about the physiological role of NatB by a combined proteomics and phenomics approach. We found that strains deleted for either NAT3 or MDM20 displayed different growth rates and morphologies in specific stress conditions, demonstrating that the two NatB subunits have partly individual functions. Earlier reported phenotypes of the nat3Δ strain have been associated with altered functionality of actin cables. However, we found that point mutants of tropomyosin that suppress the actin cable defect observed in nat3Δ only partially restores wild-type growth and morphology, indicating the existence of functionally important acetylations unrelated to actin cable function. Predicted NatB substrates were dramatically overrepresented in a distinct set of biological processes, mainly related to DNA processing and cell cycle progression. Three of these proteins, Cac2p, Pac10p, and Swc7p, were identified as true NatB substrates. To identify N-terminal acetylations potentially important for protein function, we performed a large-scale comparative phenotypic analysis including nat3Δ and strains deleted for the putative NatB substrates involved in cell cycle regulation and DNA processing. By this procedure we predicted functional importance of the N-terminal acetylation for 31 proteins.
机译:酿酒酵母中的N末端乙酰基转移酶NatB由催化亚基Nat3p和相关亚基Mdm20p组成。我们在这里通过蛋白质组学和表象组学相结合的方法扩展了我们目前对NatB的生理作用的认识。我们发现删除 NAT3 MDM20 的菌株在特定的胁迫条件下显示出不同的生长速率和形态,表明这两个NatB亚基部分具有各自的功能。较早报道的nat3Δ菌株表型与肌动蛋白电缆的功能改变有关。但是,我们发现抑制nat3Δ中观察到的肌动蛋白电缆缺陷的原肌球蛋白点突变体仅部分恢复了野生型的生长和形态,表明存在与肌动蛋白电缆功能无关的功能重要的乙酰化作用。预测的NatB底物在一组独特的生物过程中显着过量表达,主要与DNA加工和细胞周期进程有关。这些蛋白质中的三个,Cac2p,Pac10p和Swc7p,被确定为真正的NatB底物。为了鉴定对蛋白质功能潜在重要的N末端乙酰化,我们进行了大规模的比较表型分析,包括nat3Δ和缺失的,假定的涉及细胞周期调控和DNA处理的NatB底物菌株。通过该程序,我们预测了31种蛋白质的N末端乙酰化的功能重要性。

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