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Transcriptional Repressor CopR: Use of SELEX To Study the copR Operator Indicates that Evolution Was Directed at Maximal Binding Affinity

机译:转录抑制因子CopR:使用SELEX研究copR操纵子表明进化是针对最大结合亲和力的

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摘要

CopR is one of the two copy number control elements of the streptococcal plasmid pIP501. It represses transcription of the repR mRNA encoding the essential replication initiator protein about 10- to 20-fold by binding to its operator region upstream of the repR promoter pII. CopR binds at two consecutive sites in the major groove of the DNA that share the consensus motif 5′-CGTG. Previously, the minimal operator was narrowed down to 17 bp, and equilibrium dissociation constants for DNA binding and dimerization were determined to be 0.4 nM and 1.4 μM, respectively. In this work, we used a SELEX procedure to study copR operator sequences of different lengths in combination with electrophoretic mobility shift assays of mutated copR operators as well as copy number determinations to assess the sequence requirements for CopR binding. The results suggest that in vivo evolution was directed at maximal binding affinity. Three simultaneous nucleotide exchanges outside the bases directly contacted by CopR only slightly affected CopR binding in vitro or copy numbers in vivo. Furthermore, the optimal spacer sequence was found to comprise 7 bp, to be AT rich, and to need an A/T and a T at the 3′ positions, whereas broad variations in the sequences flanking the minimal 17-bp operator were well tolerated.
机译:CopR是链球菌质粒pIP501的两个拷贝数控制元件之一。它通过与repR启动子pII上游的操纵子区域结合,抑制编码必需复制起始蛋白的repR mRNA的转录约10至20倍。 CopR结合在共有共有基序5'-CGTG的DNA的主沟的两个连续位点。以前,最小算子被缩小到17 bp,DNA结合和二聚化的平衡解离常数分别确定为0.4 nM和1.4μM。在这项工作中,我们使用SELEX程序研究了不同长度的copR操纵子序列,并结合了突变copR操纵子的电泳迁移率迁移分析以及拷贝数的确定,以评估CopR结合的序列要求。结果表明体内进化针对最大结合亲和力。 CopR直接接触的碱基外部的三个同时核苷酸交换在体外或体内拷贝数方面仅轻微影响了CopR结合。此外,发现最佳的间隔区序列包含7 bp,富含AT,并且在3'位置需要A / T和T,而在最小的17 bp操纵子侧翼的序列中存在宽泛的变异性。

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