冈比亚按蚊生殖组织中过表达胞质硫转移酶的生化和结构分析

IF 2.7 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Arianna Esposito Verza , Riccardo Miggiano , Fabrizio Lombardo , Carmine Fiorillo , Bruno Arcà , Beatrice Purghé , Erika Del Grosso , Ubaldina Galli , Menico Rizzi , Franca Rossi
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引用次数: 1

摘要

生物分子的暂时或永久的化学修饰是所有生物生理的一个重要方面。然而,虽然一些模块在昆虫中也有很好的特征,但其他模块却没有得到同样的关注。这适用于由胞质硫转移酶(SULT)催化的硫偶联,SULT是内源性低分子量分子和异种生物代谢的核心组成部分。特别是,关于基因组数据库中标记为SULTs的蚊子预测酶的功能作用的信息有限。本文所描述的研究是对一种蚊子,特别是疟疾媒介冈比亚按蚊的SULT进行生化和结构研究的第一个例子。我们证实,AGAP001425转录本显示出一种特殊的表达模式,暗示可能参与调节蚊子生殖组织生理,这一事实可能引起人们对该酶作为昆虫控制策略潜在靶标的关注。该酶在配体结合状态下的晶体结构揭示了将AgSULT-001425与其他表征的sult区分的元素,包括屏蔽催化裂孔的离散区域的特殊构象可塑性,这可能在反应动力学和酶的底物选择性中发挥主要作用。随着进一步的体外生化研究,我们的结构研究可以为发现小分子抑制剂提供框架,以评估在生物水平上干扰agsult -001425介导的催化作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biochemical and structural analysis of a cytosolic sulfotransferase of the malaria vector Anopheles gambiae overexpressed in the reproductive tissues

Biochemical and structural analysis of a cytosolic sulfotransferase of the malaria vector Anopheles gambiae overexpressed in the reproductive tissues

The temporary or permanent chemical modification of biomolecules is a crucial aspect in the physiology of all living species. However, while some modules are well characterised also in insects, others did not receive the same attention. This holds true for sulfo-conjugation that is catalysed by cytosolic sulfotransferases (SULT), a central component of the metabolism of endogenous low molecular weight molecules and xenobiotics. In particular, limited information is available about the functional roles of the mosquito predicted enzymes annotated as SULTs in genomic databases. The herein described research is the first example of a biochemical and structural study of a SULT of a mosquito species, in general, and of the malaria vector Anopheles gambiae in particular. We confirmed that the AGAP001425 transcript displays a peculiar expression pattern that is suggestive of a possible involvement in modulating the mosquito reproductive tissues physiology, a fact that could raise attention on the enzyme as a potential target for insect-containment strategies. The crystal structures of the enzyme in alternative ligand-bound states revealed elements distinguishing AgSULT-001425 from other characterized SULTs, including a peculiar conformational plasticity of a discrete region that shields the catalytic cleft and that could play a main role in the dynamics of the reaction and in the substrate selectivity of the enzyme. Along with further in vitro biochemical studies, our structural investigations could provide a framework for the discovery of small-molecule inhibitors to assess the effect of interfering with AgSULT-001425-mediated catalysis at the organismal level.

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来源期刊
CiteScore
4.60
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审稿时长
104 days
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