...
首页> 外文期刊>Biological chemistry >A monomeric mutant of restriction endonuclease EcoRI nicks DNA without sequence specificity
【24h】

A monomeric mutant of restriction endonuclease EcoRI nicks DNA without sequence specificity

机译:限制性内切酶EcoRI的单体突变体可刻痕DNA且无序列特异性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

We have mutated the monomermonomer interface of the restriction endonuclease EcoRI in order to destabilize the homodimer and to stabilize heterodimers. Mutations of Leu158 to charged amino acid residues result in strong destabilization of the dimer. The largest effect was detected for the L158D mutant which is monomeric even at higher concentrations. It unspecifically degrades DNA by cleaving both single strands independently every 15 nucleotides on the average. Although cleavage is reproducible, it is not determined by nucleotide sequence but by general properties like conformation or deformability as has been found for other unspecific nucleases.Mutations of Ile230, which is in direct contact with Leu158 of the other subunit, cause structural changes with the loss of about ten percent alpha-helix content, but interfere only marginally with homodimerization and double strand cleavage. Again the mutation to aspartate shows the strongest effects. Mixtures of single mutants, one containing aspartate at one of the two positions and the other lysine at the corresponding position, form heterodimers. These are mainly stabilized compared to the homodimers by reestablishment of the wildtype hydrophobic interaction at the not mutated residues while an interaction of aspartate and lysine seems energetically unfavorable in this structural context.
机译:我们已经突变了限制性内切核酸酶EcoRI的单体界面,以使同型二聚体稳定并稳定异二聚体。 Leu158突变为带电荷的氨基酸残基导致二聚体强烈失稳。对于L158D突变体,即使在较高浓度下,其也是单体的,检测到最大的作用。通过平均每15个核苷酸独立地切割两条单链,它非特异性地降解DNA。尽管裂解是可重现的,但它不是由核苷酸序列决定的,而是由其他非特异性核酸酶发现的一般性质如构象或可变形性决定的.Ile230的突变直接与其他亚基的Leu158接触,会引起结构改变。损失约百分之十的α-螺旋含量,但仅轻微干扰均二聚和双链裂解。再次向天冬氨酸的突变显示出最强的作用。单个突变体的混合物形成异二聚体,其中一个在两个位置之一包含天冬氨酸,另一个在相应位置包含赖氨酸。与同型二聚体相比,通过在未突变残基处重新建立野生型疏水性相互作用,这些氨基酸主要是稳定的,而在这种结构背景下,天冬氨酸和赖氨酸的相互作用在能量上似乎是不利的。

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