Ruvinov S B, Miles E W
Laboratory of Biochemical Pharmacology, NIDDK, National Institutes of Health, Bethesda, Maryland 20892.
J Biol Chem. 1994 Apr 22;269(16):11703-6.
This study investigates effects of ligands on thermal inactivation of the tryptophan synthase alpha and beta 2 subunits alone and in the alpha 2 beta 2 complex. Addition of pyridoxal phosphate to the apo-beta 2 subunit increases the temperature of one-half inactivation (Ti) from 52 to 77 degrees C. Ligands that promote association of the alpha and holo-beta 2 subunits markedly stabilize the more temperature-labile alpha subunit in the alpha 2 beta 2 complex from irreversible thermal denaturation. The combination of a beta 2 subunit ligand (L-serine) with an alpha subunit ligand (alpha-glycerol 3-phosphate) raises the inactivation temperature (Ti) of the alpha subunit in the holo-alpha 2 beta 2 complex from 54 to 66 degrees C. In contrast, values of Ti for inactivation of the alpha and beta subunits in the holo-alpha 2 beta 2 complex are more similar to respective values for the isolated alpha subunit (50 degrees C) and holo-beta 2 subunit (77 degrees C). Surprisingly, the addition of L-serine results in a larger decrease in the Ti of the beta 2 subunit in the holo-alpha 2 beta 2 complex (78 degrees C-->64 degrees C) than in Ti of the holo-beta 2 subunit alone (77 degrees C-->71 degrees C). The observation that ligands have different effects on the isolated and associated subunits provides evidence that the alpha and beta 2 subunits do not fully dissociate during thermal inactivation of the alpha 2 beta 2 complex at pH 7.8 and at approximately 0.1 ionic strength. Our results demonstrate that linkage between protein-ligand interactions and protein-protein interactions affects the conformational stability of the tryptophan synthase alpha 2 beta 2 complex.
本研究调查了配体对色氨酸合成酶α亚基和β2亚基单独存在时以及α2β2复合物中热失活的影响。向脱辅基β2亚基添加磷酸吡哆醛可使半数失活温度(Ti)从52℃升高至77℃。促进α亚基与全β2亚基缔合的配体可显著稳定α2β2复合物中对温度更敏感的α亚基,使其免受不可逆热变性的影响。β2亚基配体(L-丝氨酸)与α亚基配体(3-磷酸甘油)的组合可使全α2β2复合物中α亚基的失活温度(Ti)从54℃升高至66℃。相比之下,全α2β2复合物中α亚基和β亚基失活的Ti值更类似于分离的α亚基(50℃)和全β2亚基(77℃)各自的值。令人惊讶的是,添加L-丝氨酸导致全α2β2复合物中β2亚基的Ti降低幅度(78℃→64℃)大于单独的全β2亚基(77℃→71℃)。配体对分离的亚基和缔合的亚基有不同影响这一观察结果提供了证据,表明在pH 7.8和约0.1离子强度下,α2β2复合物热失活期间α亚基和β2亚基不会完全解离。我们的结果表明,蛋白质-配体相互作用与蛋白质-蛋白质相互作用之间的联系会影响色氨酸合成酶α2β2复合物的构象稳定性。