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An ancient P-loop GTPase in rice is regulated by a higher plant-specific regulatory protein.


ABSTRACT: YchF is a subfamily of the Obg family in the TRAFAC class of P-loop GTPases. The wide distribution of YchF homologues in both eukarya and bacteria suggests that they are descendents of an ancient protein, yet their physiological roles remain unclear. Using the OsYchF1-OsGAP1 pair from rice as the prototype, we provide evidence for the regulation of GTPase/ATPase activities and RNA binding capacity of a plant YchF (OsYchF1) by its regulatory protein (OsGAP1). The effects of OsGAP1 on the subcellular localization/cycling and physiological functions of OsYchF1 are also discussed. The finding that OsYchF1 and OsGAP1 are involved in plant defense response might shed light on the functional roles of YchF homologues in plants. This work suggests that during evolution, an ancestral P-loop GTPase/ATPase may acquire new regulation and function(s) by the evolution of a lineage-specific regulatory protein.

SUBMITTER: Cheung MY 

PROVIDER: S-EPMC2988341 | biostudies-literature | 2010 Nov

REPOSITORIES: biostudies-literature

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An ancient P-loop GTPase in rice is regulated by a higher plant-specific regulatory protein.

Cheung Ming-Yan MY   Xue Yan Y   Zhou Liang L   Li Man-Wah MW   Sun Samuel Sai-Ming SS   Lam Hon-Ming HM  

The Journal of biological chemistry 20100928 48


YchF is a subfamily of the Obg family in the TRAFAC class of P-loop GTPases. The wide distribution of YchF homologues in both eukarya and bacteria suggests that they are descendents of an ancient protein, yet their physiological roles remain unclear. Using the OsYchF1-OsGAP1 pair from rice as the prototype, we provide evidence for the regulation of GTPase/ATPase activities and RNA binding capacity of a plant YchF (OsYchF1) by its regulatory protein (OsGAP1). The effects of OsGAP1 on the subcellu  ...[more]

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