Miziorko H M, Sealy R C
Biochemistry. 1980 Mar 18;19(6):1167-71. doi: 10.1021/bi00547a020.
Ribulosebisphosphate carboxylase forms a stable quaternary complex with CO2, divalent cation, and carboxypentitol bisphosphate. Incorporation of nonexchangeable CO2 into the complex requires the presence of a divalent cation. MG2+, Mn2+, or Co2+ supports stoichiometric binding of CO2 activator. When the quaternary complex is formed in the presence of saturating CO2, stoichiometric amounts of cation are bound in a nonexchangeable fashion. Incorporation of Mn2+ into an enzyme-CO2-Mn2+-carboxypentitol bisphosphate complex permitted investigation of cation environment by electron spin resonance (ESR) techniques. Measurements at 9 and 35 GHz suggest rhombic distortion of the coordination sphere of bound Mn2+. A complex inner sphere liganding of the cation bound in the quaternary complex would account for both the ESR spectra and the marked stability of the complex with respect to cation exchange.
核酮糖二磷酸羧化酶与二氧化碳、二价阳离子和羧基戊糖醇二磷酸形成稳定的四级复合物。将不可交换的二氧化碳掺入该复合物需要二价阳离子的存在。Mg2+、Mn2+或Co2+支持二氧化碳激活剂的化学计量结合。当在饱和二氧化碳存在下形成四级复合物时,化学计量的阳离子以不可交换的方式结合。将Mn2+掺入酶-二氧化碳-Mn2+-羧基戊糖醇二磷酸复合物中,使得能够通过电子自旋共振(ESR)技术研究阳离子环境。在9和35 GHz下的测量表明结合的Mn2+的配位球呈菱形畸变。四级复合物中结合的阳离子的复杂内球配位将解释ESR光谱以及该复合物相对于阳离子交换的显著稳定性。