Chen Dawei, Abend Andreas, Stubbe JoAnne, Frey Perry A
University of Wisconsin-Madison, 1710 University Avenue, Madison, Wisconsin 53726, USA.
Biochemistry. 2003 Apr 22;42(15):4578-84. doi: 10.1021/bi030018x.
The adenosylcobalamin-dependent ribonucleoside triphosphate reductase (RTPR) from Lactobacillus leichmannii catalyzes the reduction of ribonucleoside triphosphates to deoxyribonucleoside triphosphates. RTPR also catalyzes the exchange of the C5'-hydrogens of adenosylcobalalamin with solvent hydrogen. A thiyl radical located on Cys 408 is generated by reaction of adenosylcobalamin at the active site and is proposed to be the intermediate for both the nucleotide reduction and the 5'-hydrogen exchange reactions. In the present research, a stereochemical approach is used to study the mechanism of the Co-C5' bond cleavage of adenosylcobalamin in the reaction of RTPR. When stereoselectively deuterated coenzyme, (5'R)-[5'-(2)H(1)] adenosylcobalamin (5'R/S = 3:1), was incubated with RTPR or the Cys 408 viariants, C408A-RTPR and C408S-RTPR in the presence of dGTP, the deuterium at the 5'-carbon was stereochemically scrambled, leading to epimerization of the (5'S)-[5'-(2)H(1)]- and (5'R)-[5'-(2)H(1)]-isotopomers. Observation of epimerization with mutated RTPR proves that transient cleavage of the Co-C5' bond occurs in the absence of the thiol group on Cys 408. The rate constants for epimerization by RTPR, C408A-RTPR, and C408S-RTPRs in the presence of dGTP are 5.1, 0.28, and 0.42 s(-1), respectively. Only the wild-type RTPR catalyzes the 5'-hydrogen exchange reaction. Both epimerization and 5'-hydrogen exchange reactions are stimulated by the allosteric effector dGTP, and epimerization is not detected in the absence of the effector. Mechanistic implications with respect to wt-RTPR-mediated carbon cobalt bond homolysis and the intermediacy of the 5'-deoxyadenosyl radical will be presented.
来自莱氏乳杆菌的腺苷钴胺素依赖性核糖核苷三磷酸还原酶(RTPR)催化核糖核苷三磷酸还原为脱氧核糖核苷三磷酸。RTPR还催化腺苷钴胺素C5'-氢与溶剂氢的交换。位于Cys 408上的硫自由基由活性位点的腺苷钴胺素反应产生,被认为是核苷酸还原和5'-氢交换反应的中间体。在本研究中,采用立体化学方法研究RTPR反应中腺苷钴胺素Co-C5'键断裂的机制。当立体选择性氘代辅酶(5'R)-[5'-(2)H(1)]腺苷钴胺素(5'R/S = 3:1)在dGTP存在下与RTPR或Cys 408变体C408A-RTPR和C408S-RTPR一起孵育时,5'-碳上的氘发生立体化学重排,导致(5'S)-[5'-(2)H(1)]-和(5'R)-[5'-(2)H(1)]-异构体的差向异构化。用突变的RTPR观察到差向异构化证明在Cys 408上没有硫醇基团的情况下发生了Co-C5'键的瞬时断裂。在dGTP存在下,RTPR、C408A-RTPR和C408S-RTPR的差向异构化速率常数分别为5.1、0.28和0.42 s(-1)。只有野生型RTPR催化5'-氢交换反应。差向异构化和5'-氢交换反应均受到变构效应物dGTP的刺激,在没有效应物的情况下未检测到差向异构化。将介绍关于野生型RTPR介导的碳钴键均裂和5'-脱氧腺苷自由基中间体的机制含义。