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Reference - PMID:18280239 - Structural basis of dcp2 recognition and activation by dcp1.

Reference summary

PubMed ID
PMID:18280239
Title
Structural basis of dcp2 recognition and activation by dcp1.
Authors
She M, Decker CJ, Svergun DI, Round A, Chen N, Muhlrad D, Parker R, Song H
Citation
Mol Cell 2008 Feb 15;29(3):337-49
Publication year
2008
Abstract
A critical step in mRNA degradation is the removal of the 5' cap structure, which is catalyzed by the Dcp1-Dcp2 complex. The crystal structure of an S. pombe Dcp1p-Dcp2n complex combined with small-angle X-ray scattering analysis (SAXS) reveals that Dcp2p exists in open and closed conformations, with the closed complex being, or closely resembling, the catalytically more active form. This suggests that a conformational change between these open and closed complexes might control decapping. A bipartite RNA-binding channel containing the catalytic site and Box B motif is identified with a bound ATP located in the catalytic pocket in the closed complex, suggesting possible interactions that facilitate substrate binding. Dcp1 stimulates the activity of Dcp2 by promoting and/or stabilizing the closed complex. Notably, the interface of Dcp1 and Dcp2 is not fully conserved, explaining why the Dcp1-Dcp2 interaction in higher eukaryotes requires an additional factor.

Annotation

GO cellular component

GO:0098745 - RNA decapping complex

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GO molecular function

GO:0140932 - 5'-(N(7)-methyl 5'-triphosphoguanosine)-[mRNA] diphosphatase activity

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GO:0005524 - ATP binding

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GO:0170008 - mRNA phosphatase activator activity

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GO:0005515 - protein binding

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GO:0003727 - single-stranded RNA binding

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Single locus phenotype

FYPO:0003940 - abolished m7G(5')pppN diphosphatase activity

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Genotypes:

FYPO:0003941 - decreased m7G(5')pppN diphosphatase activity

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Genotypes:

FYPO:0002134 - decreased protein-RNA interaction

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