In vivo interactions between gene products involved in the final stages of molybdenum cofactor biosynthesis in Escherichia coli

The final stages of bacterial molybdenum cofactor (Moco) biosynthesis correspond to molybdenum chelation and nucleotide attachment onto an unique and ubiquitous structure, the molybdopterin. Using a bacterial two-hybrid approach, here we report on the in vivo interactions between MogA, MoeA, MobA, a...

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Bibliographic Details
Published in:The Journal of biological chemistry Vol. 277; no. 50; pp. 48199 - 48204
Main Authors: Magalon, Axel, Frixon, Chantal, Pommier, Jeanine, Giordano, Gerard, Blasco, Francis
Format: Journal Article
Language:English
Published: United States 13-12-2002
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Summary:The final stages of bacterial molybdenum cofactor (Moco) biosynthesis correspond to molybdenum chelation and nucleotide attachment onto an unique and ubiquitous structure, the molybdopterin. Using a bacterial two-hybrid approach, here we report on the in vivo interactions between MogA, MoeA, MobA, and MobB implicated in several distinct although linked steps in Escherichia coli. Numerous interactions among these proteins have been identified. Somewhat surprisingly, MobB, a GTPase with a yet unclear function, interacts with MogA, MoeA, and MobA. Probing the effects of various mo. mutations on the interaction map allowed us (i) to distinguish Moco-sensitive interactants from insensitive ones involving MobB and (ii) to demonstrate that molybdopterin is a key molecule triggering or facilitating MogA-MoeA and MoeA-MobA interactions. These results suggest that, in vivo, molybdenum cofactor biosynthesis occurs on protein complexes rather than by the separate action of molybdenum cofactor biosynthetic proteins.
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ISSN:0021-9258
DOI:10.1074/jbc.M205806200