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重氮营养醋杆菌固氮酶转录激活因子NifA的DNA结合结构域的纯化及生化特性分析

Purification and Biochemical Characterization of the DNA Binding Domain of the Nitrogenase Transcriptional Activator NifA from Gluconacetobacter diazotrophicus.

作者信息

Standke Heidi G, Kim Lois, Owens Cedric P

机构信息

Schmid College of Science and Technology, Chapman University, One University Drive, Orange, CA, 92866, USA.

出版信息

Protein J. 2023 Dec;42(6):802-810. doi: 10.1007/s10930-023-10158-w. Epub 2023 Oct 3.

Abstract

NifA is a σ activator that turns on bacterial nitrogen fixation under reducing conditions and when fixed cellular nitrogen levels are low. The redox sensing mechanism in NifA is poorly understood. In α- and β-proteobacteria, redox sensing involves two pairs of Cys residues within and immediately following the protein's central AAA domain. In this work, we examine if an additional Cys pair that is part of a C(X) C motif and located immediately upstream of the DNA binding domain of NifA from the α-proteobacterium Gluconacetobacter diazotrophicus (Gd) is involved in redox sensing. We hypothesize that the Cys residues' redox state may directly influence the DNA binding domain's DNA binding affinity and/or alter the protein's oligomeric sate. Two DNA binding domain constructs were generated, a longer construct (2C-DBD), consisting of the DNA binding domain with the upstream Cys pair, and a shorter construct (NC-DBD) that lacks the Cys pair. The K of NC-DBD for its cognate DNA sequence (nifH-UAS) is equal to 20.0 µM. The K of 2C-DBD for nifH-UAS when the Cys pair is oxidized is 34.5 µM. Reduction of the disulfide bond does not change the DNA binding affinity. Additional experiments indicate that the redox state of the Cys residues does not influence the secondary structure or oligomerization state of the NifA DNA binding domain. Together, these results demonstrate that the Cys pair upstream of the DNA binding domain of Gd-NifA does not regulate DNA binding or domain dimerization in a redox dependent manner.

摘要

NifA是一种σ激活因子,在还原条件下且细胞内固定氮水平较低时开启细菌的固氮作用。人们对NifA中的氧化还原感应机制了解甚少。在α-和β-变形杆菌中,氧化还原感应涉及蛋白质中央AAA结构域内及紧随其后的两对半胱氨酸残基。在这项研究中,我们研究了来自α-变形杆菌重氮醋杆菌(Gd)的NifA中,作为C(X)C基序一部分且位于DNA结合结构域紧邻上游的一对额外半胱氨酸是否参与氧化还原感应。我们推测半胱氨酸残基的氧化还原状态可能直接影响DNA结合结构域的DNA结合亲和力和/或改变蛋白质的寡聚状态。我们构建了两种DNA结合结构域构建体,一种较长的构建体(2C-DBD),由带有上游半胱氨酸对的DNA结合结构域组成,另一种较短的构建体(NC-DBD)则缺少该半胱氨酸对。NC-DBD对其同源DNA序列(nifH-UAS)的解离常数(K)等于20.0μM。当半胱氨酸对被氧化时,2C-DBD对nifH-UAS的K为34.5μM。二硫键的还原不会改变DNA结合亲和力。额外的实验表明,半胱氨酸残基的氧化还原状态不会影响NifA DNA结合结构域的二级结构或寡聚状态。总之,这些结果表明,Gd-NifA的DNA结合结构域上游的半胱氨酸对不会以氧化还原依赖的方式调节DNA结合或结构域二聚化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/628c/10590331/ff1d17c11652/10930_2023_10158_Fig1_HTML.jpg

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