Chen L, Sigler P B
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06511, USA.
Cell. 1999 Dec 23;99(7):757-68. doi: 10.1016/s0092-8674(00)81673-6.
The chaperonin GroEL is a double toriodal assembly that with its cochaperonin GroES facilitates protein folding with an ATP-dependent mechanism. Nonnative conformations of diverse protein substrates bind to the apical domains surrounding the opening of the double toroid's central cavity. Using phage display, we have selected peptides with high affinity for the isolated apical domain. We have determined the crystal structures of the complexes formed by the most strongly bound peptide with the isolated apical domain, and with GroEL. The peptide interacts with the groove between paired alpha helices in a manner similar to that of the GroES mobile loop. Our structural analysis, combined with other results, suggests that various modes of molecular plasticity are responsible for tight promiscuous binding of nonnative substrates and their release into the shielded cis assembly.
伴侣蛋白GroEL是一种双环形组装体,它与其伴侣蛋白GroES通过ATP依赖机制促进蛋白质折叠。多种蛋白质底物的非天然构象结合到双环中央腔开口周围的顶端结构域。利用噬菌体展示技术,我们筛选出了对分离的顶端结构域具有高亲和力的肽段。我们已经确定了与分离的顶端结构域以及与GroEL形成复合物的最强结合肽的晶体结构。该肽以类似于GroES移动环的方式与成对α螺旋之间的凹槽相互作用。我们的结构分析与其他结果相结合表明,多种分子可塑性模式导致非天然底物的紧密杂乱结合以及它们释放到受保护的顺式组装体中。