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用于鉴定二胺、多胺及相关乙酰转移酶底物的结构多样化合物筛选文库。

A Structurally Diverse Compound Screening Library to Identify Substrates for Diamine, Polyamine, and Related Acetyltransferases.

作者信息

Leiva Hazel, Caro De Silva Pamela L, Painter Ron, Le Van Thi Bich, Uychoco Patricia, Figueroa Paniagua Daniel, Endres Michael, Maltseva Natalia, Joachimiak Andrzej, Kuhn Misty L

机构信息

San Francisco State University, Department of Chemistry and Biochemistry, San Francisco, California 94132, United States.

Department of Chemistry, Foothill College, Los Altos, California 94022, United States.

出版信息

ACS Omega. 2024 Dec 2;9(50):49887-49898. doi: 10.1021/acsomega.4c08743. eCollection 2024 Dec 17.

Abstract

Spermidine/spermine acetyltransferases (SSATs) and other types of polyamine acetyltransferases (PAATs) acetylate diamines and/or polyamines. These enzymes are evolutionarily related and belong to the Gcn5-related acetyltransferase (GNAT) superfamily, yet we lack a fundamental understanding of their substrate specificity and/or promiscuity toward different compounds. Many of these enzymes are known or are predicted to acetylate polyamines, but in the cell there are other types of compounds that contain moieties derived from polyamines that may be the native substrates for these enzymes. To learn more about the identity of substrates that are acetylated, we selected and screened 17 different GNAT enzymes for activity toward a set of structurally diverse compounds that contained different types of amine moieties (, aminopropyl, aminobutyl, ). These compounds included diamines, triamines, and polyamines containing primary amino groups, and they had structural diversity with variation of the chain length and presence or absence of internal amino groups and other functional groups. We found 12 of the 17 enzymes acetylated at least one of the compounds. Some enzymes were selective toward acetylating only one compound while others exhibited substrate promiscuity toward numerous compounds. Our experimental results ultimately allowed us to pinpoint specific substrates that could be further investigated to more fully understand substrate specificity versus promiscuity of GNAT enzymes and the role of acetylated small molecules in cells.

摘要

亚精胺/精胺乙酰转移酶(SSATs)和其他类型的多胺乙酰转移酶(PAATs)可使二胺和/或多胺乙酰化。这些酶在进化上相关,属于与Gcn5相关的乙酰转移酶(GNAT)超家族,但我们对它们对不同化合物的底物特异性和/或混杂性缺乏基本了解。许多这些酶已知或被预测可使多胺乙酰化,但在细胞中还有其他类型的化合物含有源自多胺的部分,这些部分可能是这些酶的天然底物。为了更多地了解被乙酰化的底物的身份,我们选择并筛选了17种不同的GNAT酶,以检测它们对一组结构多样的化合物的活性,这些化合物含有不同类型的胺部分(如氨丙基、氨丁基等)。这些化合物包括含有伯氨基的二胺、三胺和多胺,它们在链长、内部氨基的存在与否以及其他官能团方面具有结构多样性。我们发现17种酶中有12种使至少一种化合物乙酰化。一些酶只对一种化合物的乙酰化具有选择性,而其他酶则对多种化合物表现出底物混杂性。我们的实验结果最终使我们能够确定特定的底物,这些底物可以进一步研究,以更全面地了解GNAT酶的底物特异性与混杂性以及乙酰化小分子在细胞中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc40/11656603/f97ea8b63a3c/ao4c08743_0001.jpg

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