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一种调节有丝分裂原激活的蛋白激酶信号的后生动物 ATAC 乙酰转移酶亚基与一种古老的钼喋呤合酶成分有关。

A metazoan ATAC acetyltransferase subunit that regulates mitogen-activated protein kinase signaling is related to an ancient molybdopterin synthase component.

机构信息

Stowers Institute for Medical Research, Kansas City, Missouri 64110, USA.

出版信息

Mol Cell Proteomics. 2012 May;11(5):90-9. doi: 10.1074/mcp.M111.015818. Epub 2012 Feb 18.

Abstract

Molybdopterin (MPT) synthase is an essential enzyme involved in the synthesis of the molybdenum cofactor precursor molybdopterin. The molybdenum cofactor biosynthetic pathway is conserved from prokaryotes to Metazoa. CG10238 is the Drosophila homolog of the MoaE protein, a subunit of MPT synthase, and is found in a fusion with the mitogen-activated protein kinase (MAPK)-upstream protein kinase-binding inhibitory protein (MBIP). This fused protein inhibits the activation of c-Jun N-terminal kinase (JNK). dMoaE (CG10238) carries out this function as a subunit of the ATAC histone acetyltransferase complex. In this study, we demonstrate that Drosophila MoaE (CG10238) also interacts with Drosophila MoaD and with itself to form a complex with stoichiometry identical to the MPT synthase holoenzyme in addition to its function in ATAC. We also show that sequence determinants that regulate MAPK signaling are located within the MoaE region of dMoaE (CG10238). Analysis of other metazoan MBIPs reveals that MBIP protein sequences have an N-terminal region that appears to have been derived from the MoaE protein, although it has lost residues responsible for catalytic activity. Thus, intact and modified copies of the MoaE protein may have been conscripted to play a new, noncatalytic role in MAPK signaling in Metazoa as part of the ATAC complex.

摘要

钼喋呤合酶是一种参与钼辅因子前体钼喋呤合成的必需酶。钼辅因子生物合成途径在原核生物到后生动物中是保守的。CG10238 是 MoaE 蛋白的果蝇同源物,MoaE 蛋白是钼喋呤合酶的一个亚基,与丝裂原活化蛋白激酶(MAPK)上游蛋白激酶结合抑制蛋白(MBIP)融合。这种融合蛋白抑制 c-Jun N 端激酶(JNK)的激活。dMoaE(CG10238)作为 ATAC 组蛋白乙酰转移酶复合物的一个亚基发挥此功能。在这项研究中,我们证明果蝇 MoaE(CG10238)还与果蝇 MoaD 相互作用,并与自身形成一个与 MPT 合酶全酶相同的复合物,除了其在 ATAC 中的功能。我们还表明,调节 MAPK 信号的序列决定因素位于 dMoaE(CG10238)的 MoaE 区域内。对其他后生动物 MBIP 的分析表明,MBIP 蛋白序列具有一个似乎源自 MoaE 蛋白的 N 端区域,但它失去了负责催化活性的残基。因此,完整和修饰的 MoaE 蛋白副本可能被征召到后生动物的 MAPK 信号中作为 ATAC 复合物的一部分发挥新的、非催化作用。

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