...
首页> 外文期刊>Protein Engineering >Amino acid changes in the repressor of bacteriophage lambda due to temperature-sensitive mutations in its cI gene and the structure of a highly temperature-sensitive mutant repressor.
【24h】

Amino acid changes in the repressor of bacteriophage lambda due to temperature-sensitive mutations in its cI gene and the structure of a highly temperature-sensitive mutant repressor.

机译:由于其cI基因中的温度敏感突变和高度温度敏感的突变阻遏物的结构,导致噬菌体λ阻遏物的氨基酸变化。

获取原文
获取原文并翻译 | 示例
           

摘要

The mutant cIts genes from seven different lambdacIts phages carrying tsU50, tsU9, tsU46, ts1, tsU51, tsI-22 and ts2 mutations were cloned in plasmid. The positions of these mutations and the resulting changes of amino acids in the repressor were determined by DNA sequencing. The first four mutations mapping in the N-terminal domain show the following changes: I21S, G53S, A62T and V73A, respectively. Of the three remaining mutations mapping in the C-terminal domain, cItsI-22 and cIts2 show N207T and K224E substitutions respectively, while the mutant cItsU51 gene carries F141I and P153L substitutions. Among these ts repressors, CIts2 having the charge-reversal change K224E was overexpressed from tac promoter in a plasmid and purified, and its structure and function were studied. Operator-binding studies suggest that the ts2 repressor is somewhat defective in monomer-dimer equilibrium and/or cooperativity even at permissive temperatures and loses its operator-binding ability very rapidly above 25 degrees C. Comparative studies of fluorescence and CD spectra, sulfhydryl group reactivity and elution behaviour in size-exclusion HPLC of both wild-type and ts2-mutant repressors at permissive and non-permissive temperatures suggest that the C-terminal domain of the ts2 repressor carrying a K224E substitution has a structure that does not favor tetramer formation at non-permissive temperatures.
机译:从携带tsU50,tsU9,tsU46,ts1,tsU51,tsI-22和ts2突变的七个不同lambdacIts噬菌体的突变cIts基因克隆到质粒中。通过DNA测序确定这些突变的位置以及阻遏蛋白中氨基酸的变化。 N末端结构域中的前四个突变图谱显示以下变化:分别为I21S,G53S,A62T和V73A。在C末端结构域中剩下的三个突变中,cItsI-22和cIts2分别显示N207T和K224E取代,而突变cItsU51基因带有F141I和P153L取代。在这些ts阻遏物中,具有反电荷变化K224E的CIts2在质粒中从tac启动子过表达并纯化,并对其结构和功能进行了研究。操纵子结合研究表明,即使在允许的温度下,ts2阻遏物在单体-二聚体平衡和/或共操作性上也有些缺陷,并且在高于25摄氏度时会很快丧失其操纵子结合能力。在允许和非允许温度下,野生型和ts2突变阻遏物的大小排阻HPLC中的洗脱行为以及洗脱行为表明,带有K224E取代的ts2阻遏物的C末端结构域的结构不利于四聚体的形成不允许的温度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号