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金属离子对深红红螺菌核酮糖二磷酸羧化酶/加氧酶的不同影响以及HCO₃⁻化学计量地掺入钴(III)-酶复合物中

Differential effects of metal ions on Rhodospirillum rubrum ribulosebisphosphate carboxylase/oxygenase and stoichiometric incorporation of HCO3- into a cobalt(III)--enzyme complex.

作者信息

Robison P D, Martin M N, Tabita F R

出版信息

Biochemistry. 1979 Oct 16;18(21):4453-8. doi: 10.1021/bi00588a001.

Abstract

Mg2+ or Mn2+ ions supported both the carboxylase and oxygenase activities of the Rhodospirillum rubrum ribulosebisphosphate carboxylase/oxygenase. For the carboxylase reaction, Mn2+ supported 25% of the maximum activity obtained with Mg2+; oxygenase activity, however, was twice as great with Mn2+ as compared to that with Mg2+. A further differential effect was obtained with Co2+. Co2+ did not support carboxylase activity and, in fact, was a strong inhibitor of Mg2+-dependent carboxylase activity, with a Ki of 10 microM. Co2+ did, however, support oxygenase activity, eliciting about 40% of the Mg2+-dependent oxygenase activity. No other divalent cations supported either activity. With high concentrations of Mg2+ or Mn2+, maximum carboxylase activity was seen after a 5-min activation period; activity decreased to about half of maximum after 30-min activation. A similar time dependence of activation was observed with Mn2+-dependent oxygenase activity but was not seen for Mg2+- or Co2+-dependent activity. Both carboxylase and oxygenase activities were inactivated by the oxidation of Co2+ to Co(III) with the resultant formation of a stable Co(III)--enzyme complex. In the presence of HCO3- (CO2), Co(III) modification was stoichiometric, with two cobalt atoms bound per enzyme dimer. Carbon dioxide was also incorporated into this Co(III)--enzyme complex, but only one molecule per enzyme dimer was bound, indicative of half-the-sites activity. These results thus indicate that there are substantial differences in the metal ion sites of the carboxylase and oxygenase activities of R, rubrum ribulosebisphosphate carboxylase/oxygenase.

摘要

镁离子(Mg2+)或锰离子(Mn2+)均能支持红螺菌(Rhodospirillum rubrum)核酮糖二磷酸羧化酶/加氧酶的羧化酶和加氧酶活性。对于羧化酶反应,锰离子支持的活性为镁离子所支持的最大活性的25%;然而,与镁离子相比,锰离子支持的加氧酶活性是其两倍。钴离子(Co2+)产生了进一步的差异效应。钴离子不支持羧化酶活性,实际上,它是镁离子依赖性羧化酶活性的强抑制剂,抑制常数(Ki)为10微摩尔。不过,钴离子确实支持加氧酶活性,引发的活性约为镁离子依赖性加氧酶活性的40%。没有其他二价阳离子支持这两种活性。在高浓度的镁离子或锰离子存在下,5分钟的激活期后可观察到最大羧化酶活性;30分钟激活后,活性降至最大值的约一半。对于锰离子依赖性加氧酶活性,观察到了类似的激活时间依赖性,但对于镁离子或钴离子依赖性活性则未观察到。羧化酶和加氧酶活性都因钴离子氧化为钴(III)而失活,同时形成稳定的钴(III)-酶复合物。在存在碳酸氢根离子(HCO3-,即二氧化碳)的情况下,钴(III)修饰是化学计量的,每个酶二聚体结合两个钴原子。二氧化碳也被结合到这个钴(III)-酶复合物中,但每个酶二聚体仅结合一个分子,表明存在半位点活性。因此,这些结果表明,红螺菌核酮糖二磷酸羧化酶/加氧酶的羧化酶和加氧酶活性的金属离子位点存在显著差异。

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