Rahuel-Clermont Sophie, Arutyunov Denis, Marchal Stéphane, Orlov Victor, Muronetz Vladimir, Branlant Guy
Unité Mixte de Recherche 7567 CNRS-Université Henri Poincaré, Maturation des ARN et Enzymologie Moléculaire, Faculté des Sciences, Université Henri Poincaré Nancy I, BP 239, 54506 Vandoeuvre-lès-Nancy Cedex, France.
J Biol Chem. 2005 May 13;280(19):18590-7. doi: 10.1074/jbc.M414110200. Epub 2005 Mar 9.
Catalysis by the NADP-dependent non-phosphorylating glyceraldehyde-3-phosphate dehydrogenase (GAPN) from Streptococcus mutans, a member of the aldehyde dehydrogenase (ALDH) family, relies on a local conformational reorganization of the active site. This rearrangement is promoted by the binding of NADP and is strongly kinetically favored by the formation of the ternary complex enzyme.NADP.substrate. Adiabatic differential scanning calorimetry was used to investigate the effect of ligands on the irreversible thermal denaturation of GAPN. We showed that phosphate binds to GAPN, resulting in the formation of a GAPN.phosphate binary complex characterized by a strongly decreased thermal stability, with a difference of at least 15 degrees C between the maximum temperatures of the thermal transition peaks. The kinetics of phosphate association and dissociation are slow, allowing both free and GAPN.phosphate complexes to be observed by differential scanning calorimetry and to be separated by native polyacrylamide electrophoresis run in phosphate buffer. Analysis of a set of mutants of GAPN strongly suggests that phosphate is bound to the substrate C-3 subsite. In addition, the substrate analog glycerol-3-phosphate has similar effects as does phosphate on the thermal behavior of GAPN. Based on the current knowledge on the catalytic mechanism of GAPN and other ALDHs, we propose that ligand-induced thermal destabilization is a mechanism that provides to ALDHs the required flexibility for an efficient catalysis.
变形链球菌的NADP依赖性非磷酸化甘油醛-3-磷酸脱氢酶(GAPN)是醛脱氢酶(ALDH)家族的成员之一,其催化作用依赖于活性位点的局部构象重排。这种重排由NADP的结合促进,并且在三元复合物酶·NADP·底物形成时在动力学上强烈有利。采用绝热差示扫描量热法研究配体对GAPN不可逆热变性的影响。我们发现磷酸盐与GAPN结合,形成GAPN·磷酸盐二元复合物,其特征是热稳定性大幅下降,热转变峰的最高温度之间至少相差15℃。磷酸盐结合和解离的动力学较慢,使得游离的和GAPN·磷酸盐复合物都能通过差示扫描量热法观察到,并能通过在磷酸盐缓冲液中进行的非变性聚丙烯酰胺电泳分离。对一组GAPN突变体的分析强烈表明磷酸盐与底物C-3亚位点结合。此外,底物类似物甘油-3-磷酸对GAPN热行为的影响与磷酸盐类似。基于目前对GAPN和其他ALDH催化机制的了解,我们提出配体诱导的热不稳定是一种为ALDH提供高效催化所需灵活性的机制。