Martinez A, Burns C M, Richardson J P
Department of Chemistry, Indiana University, Bloomington, 47405, USA.
J Mol Biol. 1996 Apr 19;257(5):909-18. doi: 10.1006/jmbi.1996.0211.
The termination of transcription in Escherichia coli by action of Rho factor is dependent on the ability of this homohexameric protein to make productive interactions with the nascent RNA molecule to be terminated. The roles of two residues in a phylogenetically conserved sequence motif in the RNA-binding domain of Rho, Asp60 and Phe62, were analyzed by studies of the biochemical properties of pure mutant proteins. F62S Rho had greatly reduced affinity for lambda cro RNA, very poor ability to terminate transcription in vitro by itself and only partial termination activity (at a level consistent with its in vivo defect) in the presence of NusG. D60G Rho had a high affinity for lambda cro RNA but a much lower ability to discriminate against RNA molecules lacking cis-acting Rho-utilization sequences, and a reduced efficiency of termination that was not improved by NusG. These results indicate a major role for Phe62 in stabilizing the binding of Rho to RNA through hydrophobic interactions, while Asp60 provides an electrostatic repulsive force that allows a rapid dissociation of non-productive complexes with RNA.
在大肠杆菌中,Rho因子作用导致的转录终止取决于这种六聚体蛋白与待终止的新生RNA分子进行有效相互作用的能力。通过对纯突变蛋白的生化特性研究,分析了Rho的RNA结合结构域中一个系统发育保守序列基序里的两个残基(天冬氨酸60和苯丙氨酸62)的作用。F62S Rho对λ cro RNA的亲和力大幅降低,自身在体外终止转录的能力很差,且在存在NusG的情况下只有部分终止活性(处于与其体内缺陷一致的水平)。D60G Rho对λ cro RNA具有高亲和力,但区分缺乏顺式作用Rho利用序列的RNA分子的能力低得多,且终止效率降低,NusG并不能改善这种情况。这些结果表明,苯丙氨酸62通过疏水相互作用在稳定Rho与RNA的结合中起主要作用,而天冬氨酸60提供一种静电排斥力,使非生产性RNA复合物能快速解离。