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FhlA是一种甲酸结合蛋白。

FhlA is a Formate Binding Protein.

作者信息

Fardan Abrar Abdullah Al, Koestler Benjamin James

机构信息

Department of Microbiology, The University of Chicago, Lemont, IL 60439.

Department of Biological Sciences, Western Michigan University, Kalamazoo, MI 49008.

出版信息

bioRxiv. 2024 Jul 24:2024.07.24.604796. doi: 10.1101/2024.07.24.604796.

Abstract

uses glycolysis and mixed acid fermentation and produces formate as by product. One system uses for formate oxidation is formate hydrogen lyase complex (FHL). The expression of the FHL complex is dependent on formate and regulated by the transcriptional regulator FhlA. The structure of FhlA is composed of three domains. The N-terminal domain is putatively responsible for formate binding and FhlA oligomerization as a tetramer, the central portion of FhlA contains a AAA+ domain that hydrolyzes ATP, and the C-terminal domain binds DNA. Formate enhances FhlA-mediated expression of FHL; however, FhlA direct interaction with formate has never been demonstrated. Formate-protein interactions are challenging to assess, due to the small and ubiquitous nature of the molecule. Here, we have developed three techniques to assess formate-protein interaction. We use these techniques to confirm that FhlA binds formate in the N-terminal domain , and that this interaction is partially dependent on residues E183 and E363, consistent with previous reports. This study is a proof of concept that these techniques can be used to assess other formate-protein interactions.

摘要

利用糖酵解和混合酸发酵,并产生甲酸盐作为副产物。一种用于甲酸盐氧化的系统是甲酸盐氢裂解酶复合物(FHL)。FHL复合物的表达依赖于甲酸盐,并受转录调节因子FhlA调控。FhlA的结构由三个结构域组成。N端结构域可能负责甲酸盐结合以及FhlA作为四聚体的寡聚化,FhlA的中央部分包含一个水解ATP的AAA+结构域,C端结构域结合DNA。甲酸盐增强FhlA介导的FHL表达;然而,FhlA与甲酸盐的直接相互作用从未得到证实。由于甲酸盐分子体积小且普遍存在,甲酸盐与蛋白质的相互作用难以评估。在此,我们开发了三种技术来评估甲酸盐与蛋白质的相互作用。我们使用这些技术来证实FhlA在N端结构域结合甲酸盐,并且这种相互作用部分依赖于E183和E363残基,这与之前的报道一致。这项研究证明了这些技术可用于评估其他甲酸盐与蛋白质的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0431/11291172/afa103a86c11/nihpp-2024.07.24.604796v1-f0001.jpg

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