Daniel R, Bobik T A, Gottschalk G
Institut für Mikrobiologie und Genetik der Georg-August-Universität, Göttingen, Germany.
FEMS Microbiol Rev. 1998 Dec;22(5):553-66. doi: 10.1111/j.1574-6976.1998.tb00387.x.
Glycerol and diol dehydratases exhibit a subunit composition of alpha 2 beta 2 gamma 2 and contain coenzyme B12 in the base-on form. The dehydratase reaction proceeds via a radical mechanism. The dehydratases are subject to reaction inactivation by the substrate glycerol which is caused by a cessation of the catalytic cycle because coenzyme B12 is not regenerated, instead 5'-deoxyadenosine and a catalytically inactive cobalamin are formed. The genetic organization of the dehydratase genes is quite similar in all organisms. Downstream of the dehydratase genes an open reading frame encoding a polypeptide of approximately 600 amino acids was identified which is apparently involved in the reactivation of suicide-inactivated enzyme.
甘油脱水酶和二醇脱水酶呈现出α2β2γ2的亚基组成,并且以碱基结合形式含有辅酶B12。脱水酶反应通过自由基机制进行。脱水酶会因底物甘油而发生反应失活,这是由于催化循环停止导致的,因为辅酶B12无法再生,取而代之的是形成了5'-脱氧腺苷和无催化活性的钴胺素。脱水酶基因在所有生物体中的基因组织非常相似。在脱水酶基因的下游,鉴定出一个编码约600个氨基酸的多肽的开放阅读框,该多肽显然参与了自杀失活酶的重新激活。