Li J, Wang C C
National Laboratory of Biomacromolecules, Institute of Biophysics, Academia Sinica, Beijing 100101, China.
J Biol Chem. 1999 Apr 16;274(16):10790-4. doi: 10.1074/jbc.274.16.10790.
Two D-glyceraldehyde-3-phosphate dehydrogenase (GAPDH) folding intermediate subunits bind with chaperonin 60 (GroEL) to form a stable complex, which can no longer bind with additional GAPDH intermediate subunits, but does bind with one more lysozyme folding intermediate or one chaperonin 10 (GroES) molecule, suggesting that the two GAPDH subunits bind at one end of the GroEL molecule displaying a "half of the sites" binding profile. For lysozyme, GroEL binds with either one or two folding intermediates to form a stable 1:1 or 1:2 complex with one substrate on each end of the GroEL double ring for the latter. The 1:1 complex of GroEL.GroES binds with one lysozyme or one dimeric GAPDH folding intermediate to form a stable ternary complex. Both complexes of GroEL.lysozyme1 and GroEL.GAPDH2 bind with one GroES molecule only at the other end of the GroEL molecule forming a trans ternary complex. According to the stoichiometry of GroEL binding with the GAPDH folding intermediate and the formation of ternary complexes containing GroEL.GAPDH2, it is suggested that the folding intermediate of GAPDH binds, very likely in the dimeric form, with GroEL at one end only.
两个D-甘油醛-3-磷酸脱氢酶(GAPDH)折叠中间体亚基与伴侣蛋白60(GroEL)结合形成稳定复合物,该复合物不能再与额外的GAPDH中间体亚基结合,但能与另一个溶菌酶折叠中间体或一个伴侣蛋白10(GroES)分子结合,这表明两个GAPDH亚基在GroEL分子的一端结合,呈现出“半位点”结合模式。对于溶菌酶,GroEL与一个或两个折叠中间体结合,在后一种情况下在GroEL双环的每一端与一个底物形成稳定的1:1或1:2复合物。GroEL.GroES的1:1复合物与一个溶菌酶或一个二聚体GAPDH折叠中间体结合形成稳定的三元复合物。GroEL·溶菌酶1和GroEL·GAPDH2的两种复合物都仅在GroEL分子的另一端与一个GroES分子结合形成反式三元复合物。根据GroEL与GAPDH折叠中间体结合的化学计量以及包含GroEL.GAPDH2的三元复合物的形成,表明GAPDH的折叠中间体很可能以二聚体形式仅在一端与GroEL结合。