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NAA20 氨基末端成熟对于组装 NatB N-端乙酰转移酶复合物至关重要。

Maturation of NAA20 Aminoterminal End Is Essential to Assemble NatB N-Terminal Acetyltransferase Complex.

机构信息

Division of Hematology-Oncology, CIMA Universidad de Navarra, Pamplona 31008, Spain.

Vivet Therapeutics S.L., Pamplona, Spain.

出版信息

J Mol Biol. 2020 Nov 6;432(22):5889-5901. doi: 10.1016/j.jmb.2020.09.010. Epub 2020 Oct 5.

Abstract

Protein lifespan is regulated by co-translational modification by several enzymes, including methionine aminopeptidases and N-alpha-aminoterminal acetyltransferases. The NatB enzymatic complex is an N-terminal acetyltransferase constituted by two subunits, NAA20 and NAA25, whose interaction is necessary to avoid NAA20 catalytic subunit degradation. We found that deletion of the first five amino acids of hNAA20 or fusion of a peptide to its amino terminal end abolishes its interaction with hNAA25. Substitution of the second residue of hNAA20 with amino acids with small, uncharged side-chains allows NatB enzymatic complex formation. However, replacement by residues with large or charged side-chains interferes with its hNAA25 interaction, limiting functional NatB complex formation. Comparison of NAA20 eukaryotic sequences showed that the residue following the initial methionine, an amino acid with a small uncharged side-chain, has been evolutionarily conserved. We have confirmed the relevance of second amino acid characteristics of NAA20 in NatB enzymatic complex formation in Drosophila melanogaster. Moreover, we have evidenced the significance of NAA20 second residue in Saccharomyces cerevisiae using different NAA20 versions to reconstitute NatB formation in a yNAA20-KO yeast strain. The requirement in humans and in fruit flies of an amino acid with a small uncharged side-chain following the initial methionine of NAA20 suggests that methionine aminopeptidase action may be necessary for the NAA20 and NAA25 interaction. We showed that inhibition of MetAP2 expression blocked hNatB enzymatic complex formation by retaining the initial methionine of NAA20. Therefore, NatB-mediated protein N-terminal acetylation is dependent on methionine aminopeptidase, providing a regulatory mechanism for protein N-terminal maturation.

摘要

蛋白质的寿命受到几种酶的翻译后修饰的调节,包括蛋氨酸氨肽酶和 N-末端α-氨酰基转移酶。NatB 酶复合物是由两个亚基 NAA20 和 NAA25 组成的 N-末端乙酰基转移酶,其相互作用对于避免 NAA20 催化亚基降解是必要的。我们发现,hNAA20 的前五个氨基酸缺失或与其氨基末端融合一个肽段会使其与 hNAA25 的相互作用丧失。用具有小的、不带电荷的侧链的氨基酸替换 hNAA20 的第二个残基允许 NatB 酶复合物的形成。然而,用具有大或带电荷的侧链的残基替换会干扰其与 hNAA25 的相互作用,限制功能性 NatB 复合物的形成。比较 NAA20 的真核序列表明,紧跟初始甲硫氨酸的氨基酸是一个具有小的不带电荷的侧链的氨基酸,已经在进化上得到了保守。我们已经证实了 NAA20 的第二个氨基酸特征在果蝇 NatB 酶复合物形成中的相关性。此外,我们使用不同的 NAA20 版本在 yNAA20-KO 酵母菌株中重新构建 NatB 形成,证实了 NAA20 第二个残基在酿酒酵母中的重要性。NAA20 的初始甲硫氨酸后紧跟一个小的不带电荷的侧链的氨基酸在人类和果蝇中的重要性表明,甲硫氨酸氨肽酶的作用可能是 NAA20 和 NAA25 相互作用所必需的。我们表明,MetAP2 表达的抑制通过保留 NAA20 的初始甲硫氨酸来阻断 hNatB 酶复合物的形成。因此,NatB 介导的蛋白质 N-末端乙酰化依赖于蛋氨酸氨肽酶,为蛋白质 N-末端成熟提供了一种调节机制。

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