Roseman A M, Chen S, White H, Braig K, Saibil H R
Department of Crystallography, Birkbeck College, University of London, United Kingdom.
Cell. 1996 Oct 18;87(2):241-51. doi: 10.1016/s0092-8674(00)81342-2.
Chaperonin-assisted protein folding proceeds through cycles of ATP binding and hydrolysis by the large chaperonin GroEL, which undergoes major allosteric rearrangements. Interaction between the two back-to-back seven-membered rings of GroEL plays an important role in regulating binding and release of folding substrates and of the small chaperonin GroES. Using cryo-electron microscopy, we have obtained three-dimensional reconstructions to 30 A resolution for GroEL and GroEL-GroES complexes in the presence of ADP, ATP, and the nonhydrolyzable ATP analog, AMP-PNP. Nucleotide binding to the equatorial domains of GroEL causes large rotations of the apical domains, containing the GroES and substrate protein-binding sites. We propose a mechanism for allosteric switching and describe conformational changes that may be involved in critical steps of folding for substrates encapsulated by GroES.
伴侣蛋白辅助的蛋白质折叠过程通过大伴侣蛋白GroEL的ATP结合和水解循环进行,GroEL会发生主要的变构重排。GroEL两个背靠背的七元环之间的相互作用在调节折叠底物和小伴侣蛋白GroES的结合与释放中起重要作用。利用冷冻电子显微镜,我们获得了在ADP、ATP和不可水解的ATP类似物AMP-PNP存在下GroEL以及GroEL-GroES复合物的30埃分辨率三维重建结构。核苷酸与GroEL赤道结构域的结合会导致顶端结构域发生大的旋转,顶端结构域包含GroES和底物蛋白结合位点。我们提出了一种变构转换机制,并描述了可能参与被GroES包裹的底物折叠关键步骤的构象变化。