Aramli L A, Teschke C M
Department of Molecular and Cell Biology, University of Connecticut, Storrs, Connecticut 06269-3125, USA.
J Biol Chem. 1999 Aug 6;274(32):22217-24. doi: 10.1074/jbc.274.32.22217.
The amino acid sequence of a polypeptide defines both the folding pathway and the final three-dimensional structure of a protein. Eighteen amino acid substitutions have been identified in bacteriophage P22 coat protein that are defective in folding and cause their folding intermediates to be substrates for GroEL and GroES. These temperature-sensitive folding (tsf) substitutions identify amino acids that are critical for directing the folding of coat protein. Additional amino acid residues that are critical to the folding process of P22 coat protein were identified by isolating second site suppressors of the tsf coat proteins. Suppressor substitutions isolated from the phage carrying the tsf coat protein substitutions included global suppressors, which are substitutions capable of alleviating the folding defects of numerous tsf coat protein mutants. In addition, potential global and site-specific suppressors were isolated, as well as a group of same site amino acid substitutions that had a less severe phenotype than the tsf parent. The global suppressors were located at positions 163, 166, and 170 in the coat protein sequence and were 8-190 amino acid residues away from the tsf parent. Although the folding of coat proteins with tsf amino acid substitutions was improved by the global suppressor substitutions, GroEL remained necessary for folding. Therefore, we believe that the global suppressor sites identify a region that is critical to the folding of coat protein.
多肽的氨基酸序列决定了蛋白质的折叠途径和最终的三维结构。在噬菌体P22外壳蛋白中已鉴定出18个氨基酸替换,这些替换在折叠方面存在缺陷,导致其折叠中间体成为GroEL和GroES的底物。这些温度敏感型折叠(tsf)替换确定了对指导外壳蛋白折叠至关重要的氨基酸。通过分离tsf外壳蛋白的第二位点抑制子,鉴定出了对P22外壳蛋白折叠过程至关重要的其他氨基酸残基。从携带tsf外壳蛋白替换的噬菌体中分离出的抑制子替换包括全局抑制子,即能够减轻众多tsf外壳蛋白突变体折叠缺陷的替换。此外,还分离出了潜在的全局和位点特异性抑制子,以及一组表型比tsf亲本轻的同一位点氨基酸替换。全局抑制子位于外壳蛋白序列的第163、166和170位,与tsf亲本相距8 - 190个氨基酸残基。尽管全局抑制子替换改善了具有tsf氨基酸替换的外壳蛋白的折叠,但GroEL对于折叠仍然是必需的。因此,我们认为全局抑制子位点确定了一个对外壳蛋白折叠至关重要的区域。