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Structural analyses of a constitutively active mutant of exchange protein directly activated by cAMP.


ABSTRACT: Exchange proteins directly activated by cAMP (EPACs) are important allosteric regulators of cAMP-mediated signal transduction pathways. To understand the molecular mechanism of EPAC activation, we have combined site-directed mutagenesis, X-ray crystallography, and peptide amide hydrogen/deuterium exchange mass spectrometry (DXMS) to probe the structural and conformational dynamics of EPAC2-F435G, a constitutively active EPAC2 mutant. Our study demonstrates that conformational dynamics plays a critical role in cAMP-induced EPAC activation. A glycine mutation at 435 position shifts the equilibrium of conformational dynamics towards the extended active conformation.

SUBMITTER: White MA 

PROVIDER: S-EPMC3506601 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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Structural analyses of a constitutively active mutant of exchange protein directly activated by cAMP.

White Mark A MA   Li Sheng S   Tsalkova Tamara T   Mei Fang C FC   Liu Tong T   Woods Virgil L VL   Cheng Xiaodong X  

PloS one 20121126 11


Exchange proteins directly activated by cAMP (EPACs) are important allosteric regulators of cAMP-mediated signal transduction pathways. To understand the molecular mechanism of EPAC activation, we have combined site-directed mutagenesis, X-ray crystallography, and peptide amide hydrogen/deuterium exchange mass spectrometry (DXMS) to probe the structural and conformational dynamics of EPAC2-F435G, a constitutively active EPAC2 mutant. Our study demonstrates that conformational dynamics plays a cr  ...[more]

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