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甘氨酸连接子的精氨酸37决定了HapR的调节功能。

Arginine 37 of Glycine Linker Dictates Regulatory Function of HapR.

作者信息

Ekka Manjula, Mondal Abhisek, Singh Richa, Sen Himanshu, Datta Saumen, Raychaudhuri Saumya

机构信息

Council of Scientific and Industrial Research (CSIR), Institute of Microbial Technology, Chandigarh, India.

Council of Scientific and Industrial Research (CSIR), Indian Institute of Chemical Biology, Kolkata, India.

出版信息

Front Microbiol. 2020 Aug 21;11:1949. doi: 10.3389/fmicb.2020.01949. eCollection 2020.

Abstract

HapR is designated as a high cell density quorum sensing master regulatory protein of . It is a member of the TetR family protein and functions both as an activator and a repressor by directly communicating with cognate promoters, thus controlling the expression of a plethora of genes in a density-dependent manner. Molecular insights reveal the domain architecture and further unveil the significance of a cross talk between the DNA binding domain and the dimerization domain for the functionality of the wild-type protein. The DNA binding domain is made up of three α-helices, where a helix-turn-helix motif spans between the helices α2 and α3. The essentiality of the glycine-rich linker linking helices α1 and α2 came into prominence while unraveling the molecular basis of a natural non-functional variant of HapR. Subsequently, the importance of linker length was demonstrated. The present study, involving a series of biochemical analyses coupled with molecular dynamics simulation, has illustrated the indispensability of a critical arginine within the linker at position 37 contributing to HapR-DNA binding activity.

摘要

HapR被指定为[具体细菌名称]的高细胞密度群体感应主调控蛋白。它是TetR家族蛋白的一员,通过与同源启动子直接相互作用,兼具激活剂和抑制剂的功能,从而以密度依赖的方式控制大量基因的表达。分子层面的深入研究揭示了其结构域架构,并进一步揭示了DNA结合结构域与二聚化结构域之间的相互作用对野生型蛋白功能的重要性。DNA结合结构域由三个α螺旋组成,其中一个螺旋-转角-螺旋基序横跨α2和α3螺旋之间。在揭示HapR天然无功能变体的分子基础时,连接α1和α2螺旋的富含甘氨酸的连接子的重要性凸显出来。随后,证明了连接子长度的重要性。本研究通过一系列生化分析并结合分子动力学模拟,阐明了连接子中第37位关键精氨酸对HapR-DNA结合活性的不可或缺性。

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