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Characterization of the coformycin biosynthetic gene cluster in Streptomyces kaniharaensis.


ABSTRACT: Coformycin and pentostatin are structurally related N-nucleoside inhibitors of adenosine deaminase characterized by an unusual 1,3-diazepine nucleobase. Herein, the cof gene cluster responsible for coformycin biosynthesis is identified. Reconstitution of the coformycin biosynthetic pathway in vitro demonstrates that it overlaps significantly with the early stages of l-histidine biosynthesis. Committed entry into the coformycin pathway takes place via conversion of a shared branch point intermediate to 8-ketocoformycin-[Formula: see text]-monophosphate catalyzed by CofB, which is a homolog of succinylaminoimidazolecarboxamide ribotide (SAICAR) synthetase. This reaction appears to proceed via a Dieckmann cyclization and a retro-aldol elimination, releasing ammonia and D-erythronate-4-phosphate as coproducts. Completion of coformycin biosynthesis involves reduction and dephosphorylation of the CofB product, with the former reaction being catalyzed by the NADPH-dependent dehydrogenase CofA. CofB also shows activation by adenosine triphosphate (ATP) despite the reaction requiring neither a phosphorylated nor an adenylated intermediate. This may serve to help regulate metabolic partitioning between the l-histidine and coformycin pathways.

SUBMITTER: Ren D 

PROVIDER: S-EPMC7229688 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Characterization of the coformycin biosynthetic gene cluster in <i>Streptomyces kaniharaensis</i>.

Ren Daan D   Ruszczycky Mark W MW   Ko Yeonjin Y   Wang Shao-An SA   Ogasawara Yasushi Y   Kim Minje M   Liu Hung-Wen HW  

Proceedings of the National Academy of Sciences of the United States of America 20200429 19


Coformycin and pentostatin are structurally related N-nucleoside inhibitors of adenosine deaminase characterized by an unusual 1,3-diazepine nucleobase. Herein, the <i>cof</i> gene cluster responsible for coformycin biosynthesis is identified. Reconstitution of the coformycin biosynthetic pathway in vitro demonstrates that it overlaps significantly with the early stages of l-histidine biosynthesis. Committed entry into the coformycin pathway takes place via conversion of a shared branch point in  ...[more]

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