Brooks Amanda J, Vlasie Monica, Banerjee Ruma, Brunold Thomas C
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
J Am Chem Soc. 2005 Nov 30;127(47):16522-8. doi: 10.1021/ja0503736.
Despite decades of research, the mechanism by which coenzyme B12 (adenosylcobalamin, AdoCbl)-dependent enzymes promote homolytic cleavage of the cofactor's Co-C bond to initiate catalysis has continued to elude researchers. In this work, we utilized magnetic circular dichroism spectroscopy to explore how the electronic structure of the reduced B12 cofactor (i.e., the post-homolysis product Co2+ Cbl) is modulated by the enzyme methylmalonyl-CoA mutase. Our data reveal a fairly uniform stabilization of the Co 3d orbitals relative to the corrin pi/pi*-based molecular orbitals when Co2+ Cbl is bound to the enzyme active site, particularly in the presence of substrate. Contrastingly, our previous studies (Brooks, A. J.; Vlasie, M.; Banerjee, R.; Brunold, T. C. J. Am. Chem. Soc. 2004, 126, 8167-8180.) showed that when AdoCbl is bound to the MMCM active site, no enzymatic perturbation of the Co3+ Cbl electronic structure occurs, even in the presence of substrate (analogues). Collectively, these observations provide direct evidence that enzymatic Co-C bond activation involves stabilization of the post-homolysis product, Co2+ Cbl, rather than destabilization of the Co3+ Cbl "ground" state.
尽管经过了数十年的研究,但依赖辅酶B12(腺苷钴胺素,AdoCbl)的酶促进辅因子的Co-C键均裂以启动催化作用的机制仍然一直未能被研究人员所揭示。在这项工作中,我们利用磁圆二色光谱来探究还原型B12辅因子(即均裂后产物Co2+钴胺素)的电子结构是如何被甲基丙二酰辅酶A变位酶调节的。我们的数据表明,当Co2+钴胺素结合到酶活性位点时,特别是在有底物存在的情况下,相对于基于咕啉π/π*的分子轨道,Co 3d轨道有相当一致的稳定化。相反,我们之前的研究(布鲁克斯,A. J.;弗拉西,M.;巴纳吉,R.;布鲁诺尔德,T. C. 《美国化学会志》2004年,126卷,8167 - 8180页)表明,当AdoCbl结合到MMCM活性位点时,即使在有底物(类似物)存在的情况下,Co3+钴胺素的电子结构也不会发生酶促扰动。总的来说,这些观察结果提供了直接证据,表明酶促Co-C键活化涉及均裂后产物Co2+钴胺素的稳定化,而不是Co3+钴胺素“基态”的去稳定化。