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Sacrificial Cobalt-Carbon Bond Homolysis in Coenzyme B12 as a Cofactor Conservation Strategy.


ABSTRACT: A sophisticated intracellular trafficking pathway in humans is used to tailor vitamin B12 into its active cofactor forms, and to deliver it to two known B12-dependent enzymes. Herein, we report an unexpected strategy for cellular retention of B12, an essential and reactive cofactor. If methylmalonyl-CoA mutase is unavailable to accept the coenzyme B12 product of adenosyltransferase, the latter catalyzes homolytic scission of the cobalt-carbon bond in an unconventional reversal of the nucleophilic displacement reaction that was used to make it. The resulting homolysis product binds more tightly to adenosyltransferase than does coenzyme B12, facilitating cofactor retention. We have trapped, and characterized spectroscopically, an intermediate in which the cobalt-carbon bond is weakened prior to being broken. The physiological relevance of this sacrificial catalytic activity for cofactor retention is supported by the significantly lower coenzyme B12 concentration in patients with dysfunctional methylmalonyl-CoA mutase but normal adenosyltransferase activity.

SUBMITTER: Campanello GC 

PROVIDER: S-EPMC6743335 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Sacrificial Cobalt-Carbon Bond Homolysis in Coenzyme B<sub>12</sub> as a Cofactor Conservation Strategy.

Campanello Gregory C GC   Ruetz Markus M   Dodge Greg J GJ   Gouda Harsha H   Gupta Aditi A   Twahir Umar T UT   Killian Michelle M MM   Watkins David D   Rosenblatt David S DS   Brunold Thomas C TC   Warncke Kurt K   Smith Janet L JL   Banerjee Ruma R  

Journal of the American Chemical Society 20181008 41


A sophisticated intracellular trafficking pathway in humans is used to tailor vitamin B<sub>12</sub> into its active cofactor forms, and to deliver it to two known B<sub>12</sub>-dependent enzymes. Herein, we report an unexpected strategy for cellular retention of B<sub>12</sub>, an essential and reactive cofactor. If methylmalonyl-CoA mutase is unavailable to accept the coenzyme B<sub>12</sub> product of adenosyltransferase, the latter catalyzes homolytic scission of the cobalt-carbon bond in a  ...[more]

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