...
首页> 外文期刊>Journal of Molecular Biology >The critical roles of residues P235 and F236 of subunit A of the motor protein A-ATP synthase in P-loop formation and nucleotide binding.
【24h】

The critical roles of residues P235 and F236 of subunit A of the motor protein A-ATP synthase in P-loop formation and nucleotide binding.

机译:运动蛋白A-ATP合酶A亚基P235和F236残基在P环形成和核苷酸结合中的关键作用。

获取原文
获取原文并翻译 | 示例
           

摘要

The mutants P235A and F236A have been generated and their crystal structure was determined to resolutions of 2.38 and 2.35 A, respectively, in order to understand the residues involved in the formation of the novel arched P-loop of subunit A of the A-ATP synthase from Pyrococcus horikoshii OT3. Both the structures show unique, altered conformations for the P-loop. Comparison with the previously solved wild type and P-loop mutant S238A structures of subunit A showed that the P-loop conformation for these two novel mutants occupy intermediate positions, with the wild type fully arched and the well-relaxed S238A mutant structures taking the extreme positions. Even though the deviation is similar for both mutants, the curvature of the P-loop faces the opposite direction. Deviations in the GER-loop, lying above the P-loop, are similar for both mutants, but in F236A, it moves towards the P-loop by around 2 A. The curvature of the loop region V392-V410, located directly behind the P-loop, moves close by 3.6 A towards the P-loop in the F236A structure and away by 2.5 A in the P235A structure. Two major deviations were observed in the P235A mutant, which are not identified in any of the subunit A structures analyzed so far, one being a wide movement of the N-terminal loop region (R90-P110) making a rotation of 80 degrees and the other being rigid-body rotation of the C-terminal helices from Q520-A588 by around 4 degrees upwards. Taken together, the data presented demonstrate the concerted effects of the critical residues P235A, F236, and S238 in the unique P-loop conformation of the A-ATP synthases.
机译:突变体P235A和F236A已产生,其晶体结构分别确定为2.38和2.35 A的分辨率,以了解参与形成A-ATP合酶A亚基的新型拱形P环的残基来自火球菌OT3。两种结构都显示出独特的,变化的P环构象。与先前解析的亚基A的野生型和P环突变体S238A结构的比较表明,这两个新突变体的P环构象占据了中间位置,其中野生型完全呈弓形,而松弛的S238A突变体结构处于极端职位。即使两个突变体的偏差相似,P环的曲率也朝向相反的方向。对于两个突变体,位于P环上方的GER环中的偏差相似,但在F236A中,它朝P环移动了大约2A。 P回路在F236A结构中向P回路靠近3.6 A,而在P235A结构中向P环偏移2.5A。在P235A突变体中观察到两个主要偏差,到目前为止,在所分析的任何亚基A结构中均未发现这两个主要偏差,一个是N末端环区(R90-P110)的广泛运动,其旋转了80度,并且其他是Q520-A588的C端螺旋的刚体旋转向上约4度。综上所述,所提供的数据证明了关键残基P235A,F236和S238在A-ATP合酶的独特P环构象中的协同作用。

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