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枯草芽孢杆菌PaiA作为一种新型N1-亚精胺/精胺乙酰转移酶的结构和功能证据。

Structural and functional evidence for Bacillus subtilis PaiA as a novel N1-spermidine/spermine acetyltransferase.

作者信息

Forouhar Farhad, Lee In-Sun, Vujcic Jelena, Vujcic Slavoljub, Shen Jianwei, Vorobiev Sergey M, Xiao Rong, Acton Thomas B, Montelione Gaetano T, Porter Carl W, Tong Liang

机构信息

Department of Biological Sciences, Northeast Structural Genomics Consortium, Columbia University, New York, New York 10027, USA.

出版信息

J Biol Chem. 2005 Dec 2;280(48):40328-36. doi: 10.1074/jbc.M505332200. Epub 2005 Oct 6.

DOI:10.1074/jbc.M505332200
PMID:16210326
Abstract

Bacillus subtilis PaiA has been implicated in the negative control of sporulation as well as production of degradative enzymes. PaiA shares recognizable sequence homology with N-acetyltransferases, including those that can acetylate spermidine/spermine substrates. We have determined the crystal structure of PaiA in complex with CoA at 1.9 A resolution and found that PaiA is a member of the N-acetyltransferase superfamily of enzymes. Unexpectedly, we observed the binding of an oxidized CoA dimer in the active site of PaiA, and the structural information suggests the substrates of the enzyme could be linear, positively charged compounds. Our biochemical characterization is also consistent with this possibility, since purified PaiA possesses N1-acetyltransferase activity toward polyamine substrates including spermidine and spermine. Further, conditional overexpression of PaiA in bacteria results in increased acetylation of endogenous spermidine pools. Thus, our structural and biochemical analyses indicate that PaiA is a novel N-acetyltransferase capable of acetylating both spermidine and spermine. In this way, the pai operon may function in regulating intracellular polyamine concentrations and/or binding capabilities. In addition to preventing toxicity due to polyamine excess, this function may also serve to regulate expression of certain bacterial gene products such as those involved in sporulation.

摘要

枯草芽孢杆菌PaiA与芽孢形成的负调控以及降解酶的产生有关。PaiA与N - 乙酰转移酶具有可识别的序列同源性,包括那些能够乙酰化亚精胺/精胺底物的酶。我们已经确定了PaiA与辅酶A复合物在1.9埃分辨率下的晶体结构,发现PaiA是N - 乙酰转移酶超家族的一员。出乎意料的是,我们观察到氧化型辅酶A二聚体结合在PaiA的活性位点,并且结构信息表明该酶的底物可能是线性的带正电荷的化合物。我们的生化特性分析也与这种可能性一致,因为纯化的PaiA对包括亚精胺和精胺在内的多胺底物具有N1 - 乙酰转移酶活性。此外,在细菌中条件性过表达PaiA会导致内源性亚精胺池的乙酰化增加。因此,我们的结构和生化分析表明PaiA是一种新型的N - 乙酰转移酶,能够乙酰化亚精胺和精胺。通过这种方式,pai操纵子可能在调节细胞内多胺浓度和/或结合能力中发挥作用。除了防止多胺过量导致的毒性外,该功能还可能用于调节某些细菌基因产物的表达,如那些参与芽孢形成的产物。

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