首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Inter and intra-subunit interactions at the subunit interface of chaperonin GroEL are essential for its stability and assembly
【24h】

Inter and intra-subunit interactions at the subunit interface of chaperonin GroEL are essential for its stability and assembly

机译:伴随伴侣轴轴轴轴轴围绕其稳定性和组装的亚基和亚基间界面间相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

Chaperonin GroEL helps in the folding of substrate proteins under normal and stress conditions. Although it remains stable and functional during stress conditions, the quantitative estimation of stability parameters and the specific amino-acid residues playing a role in its stability are not known in sufficient detail. The reason for poor understanding is its large size, multimeric nature, and irreversible unfolding process. The X-ray crystal structure reveals that equatorial domain forms almost all intra and inter-subunit interactions for assembly of GroEL. Considering all these facts, we adopted alternate strategies to use monomeric GroEL, native GroEL and equatorial domain mutants (GroEL(K4E)/GroEL(D523K)/GroEL(D473C)) to study the assembly and stability of GroEL. Loss of inter-subunit interaction involving K4 residue of one subunit and E59, 160, E61, 162 residues of adjacent subunit due to K4E mutation affect the oligomerization efficiency of GroEL subunits while the equilibrium unfolding studies on wild-type monomeric GroEL, native GroEL, and the selected mutants together demonstrate that intra-subunit interactions involving K4 and D523 of the same subunit play a critical role in the thermodynamic stability of both native and monomeric GroEL without affecting the oligomerization of subunits. The stability order between the GroEL(wild-type)(M) and its variants is GroEL(wild-type)(M) = GroEL(D473C)(M) GrOEL(D523K)(M) GrOEL(K4E).
机译:伴侣素腹股沟在正常和应力条件下有助于衬底蛋白的折叠。虽然在应力条件下保持稳定且功能性,但是在其稳定性中发挥作用的稳定性参数和特定氨基酸残基的定量估计是不够的。理解不良的原因是其大尺寸,多端性质和不可逆转的展开过程。 X射线晶体结构表明,赤道结构域几乎形成了Groel组装的所有帧内和亚基间相互作用。考虑到所有这些事实,我们采用了替代策略来使用单体腹股沟,天然腹股沟和赤道结构域突变体(腹股沟(K4E)/腹股沟(D523K)/腹股沟(D473C))来研究腹股沟的组装和稳定性。由于K4E突变引起一个亚基和E59,160,E61,161,162,E61,162残基的次基间相互作用的丧失影响了腹股沟亚基的低聚效率,而野生型单体腹股沟,天然腹股沟,天然腹股沟所选突变体共同证明涉及同一亚基的K4和D523的亚基间相互作用在天然和单体腹股沟的热力学稳定性中起重要作用,而不影响亚基的低聚。腹股沟(野生型)(m)及其变体之间的稳定性顺序是腹股沟(野生型)(m)& =腹股沟(D473c)(m)&腹股沟(D523K)(m)&腹股沟(K4e)。

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