FERM domain interaction with myosin negatively regulates FAK in cardiomyocyte hypertrophy
Contribuinte(s) |
UNIVERSIDADE DE SÃO PAULO |
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Data(s) |
05/11/2013
05/11/2013
2012
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Resumo |
Focal adhesion kinase (FAK) regulates cellular processes that affect several aspects of development and disease. The FAK N-terminal FERM (4.1 protein-ezrin-radixin-moesin homology) domain, a compact clover-leaf structure, binds partner proteins and mediates intramolecular regulatory interactions. Combined chemical cross-linking coupled to MS, small-angle X-ray scattering, computational docking and mutational analyses showed that the FAK FERM domain has a molecular cleft (similar to 998 angstrom(2)) that interacts with sarcomeric myosin, resulting in FAK inhibition. Accordingly, mutations in a unique short amino acid sequence of the FERM myosin cleft, FP-1, impaired the interaction with myosin and enhanced FAK activity in cardiomyocytes. An FP-1 decoy peptide selectively inhibited myosin interaction and increased FAK activity, promoting cardiomyocyte hypertrophy through activation of the AKT-mammalian target of rapamycin pathway. Our findings uncover an inhibitory interaction between the FAK FERM domain and sarcomeric myosin that presents potential opportunities to modulate the cardiac hypertrophic response through changes in FAK activity. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) [2006/54878-3, 2007/55930-1, 2007/59442-1, 2008/53519-5, 2008/57805-2, 2010/02628-9] Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) Conselho Nacional de Pesquisa (CNPq) [304366/2009-9, 475158/2010-5, 573672/2008-3, 559698/2009-7] Conselho Nacional de Pesquisa (CNPq) |
Identificador |
NATURE CHEMICAL BIOLOGY, NEW YORK, v. 8, n. 1, p. 102-110, JAN, 2012 1552-4450 http://www.producao.usp.br/handle/BDPI/41681 10.1038/nchembio.717 |
Idioma(s) |
eng |
Publicador |
NATURE PUBLISHING GROUP NEW YORK |
Relação |
NATURE CHEMICAL BIOLOGY |
Direitos |
restrictedAccess Copyright NATURE PUBLISHING GROUP |
Palavras-Chave | #FOCAL ADHESION KINASE #SMALL-ANGLE SCATTERING #BIOLOGICAL MACROMOLECULES #CARDIAC-HYPERTROPHY #PROTEIN #AUTOPHOSPHORYLATION #MECHANOTRANSDUCTION #PHOSPHORYLATION #INHIBITOR #PEPTIDES #BIOCHEMISTRY & MOLECULAR BIOLOGY |
Tipo |
article original article publishedVersion |