Cobalt-sulfur (Co-S) coordination is labile to both oxidation and reduction chemistry and is rarely seen in nature. Cobalamin (or vitamin B(12)) is an essential cobalt-containing organometallic cofactor in mammals and is escorted via an intricate network of chaperones to a single cytoplasmic target, methionine synthase. In this study, we report that the human cobalamin trafficking protein, MMADHC, exploits the chemical lability of Co-S coordination for cofactor off-loading onto methionine synthase. Cys-261 on MMADHC serves as the β-axial ligand to cobalamin. Complex formation between MMADHC and methionine synthase is signaled by loss of the lower axial nitrogen ligand, leading to five-coordinate thiolato-cobalamin. Nucleophilic displacement by the vicinal thiolate, Cys-262, completes cofactor transfer to methionine synthase and release of a cysteine disulfide-containing MMADHC. The physiological relevance of this mechanism is supported by clinical variants of MMADHC, which impair cofactor binding and off-loading, explaining the molecular basis of the associated homocystinuria.
Cobalt-Sulfur Coordination Chemistry Drives B(12) Loading onto Methionine Synthase.
钴硫配位化学驱动B(12)加载到蛋氨酸合成酶上
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作者:Mascarenhas Romila, Guha Arkajit, Li Zhu, Ruetz Markus, An Sojin, Seravalli Javier, Banerjee Ruma
| 期刊: | Journal of the American Chemical Society | 影响因子: | 15.600 |
| 时间: | 2023 | 起止号: | 2023 Nov 2 |
| doi: | 10.1021/jacs.3c07941 | 研究方向: | 免疫/内分泌 |
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