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dc.contributor.authorSil, Parames Chandra
dc.contributor.authorGupta, S.
dc.contributor.authorYoung, D.
dc.contributor.authorSen, S.
dc.date.accessioned2013-04-02T12:05:08Z
dc.date.available2013-04-02T12:05:08Z
dc.date.issued2004-07-01
dc.identifierFOR ACCESS / DOWNLOAD PROBLEM -- PLEASE CONTACT LIBRARIAN, BOSE INSTITUTE, akc@bic.boseinst.ernet.inen_US
dc.identifier.citationSil P, Gupta S, Young D and Sen S. (2004) Regulation of myotrophin gene by pressure overload and stretch. Mol. Cel1 Biochem. 262, 79-89.en_US
dc.identifier.issn0300-8177
dc.identifier.uri1.Full Text Link ->
dc.identifier.urihttp://link.springer.com/content/pdf/10.1023%2FB%3AMCBI.0000038219.46896.a4en_US
dc.identifier.uri=================================================en_US
dc.identifier.uri2. Scopus : Citation Link ->en_US
dc.identifier.urihttp://www.scopus.com/record/display.url?eid=2-s2.0-4344605747&origin=resultslist&sort=plf-f&src=s&nlo=&nlr=&nls=&sid=DEE7BF283ED6E12BE230003963403DAE.N5T5nM1aaTEF8rE6yKCR3A%3a60&sot=aut&sdt=a&sl=35&s=AU-ID%28%22Sil%2c+Parames+C.%22+8905976000%29&relpos=96&relpos=16&searchTerm=AU-ID%28\%26quot%3BSil%2C+Parames+C.\%26quot%3B+8905976000%29en_US
dc.descriptionDOI: 10.1023/B:MCBI.0000038219.46896.a4en_US
dc.description.abstractHemodynamic load is a major determinant of cardiac mass and its phenotype, but very little is known about how mechanical load is converted into intracellular signals of gene expression and regulation. We have shown earlier that factors other than blood pressure control play a role in the mechanism involved in the development or regression of myocardial hypertrophy. We have identified a soluble factor, myotrophin, from the hearts of spontaneously hypertensive rats and dilated cardiomyopathic humans, which stimulates protein synthesis both in neonatal and adult rat cardiac myocytes. Myotrophin gene has been mapped and shown to be a novel gene localized in human chromosome 7q-33. The present study was conducted to evaluate the mechanism by which myotrophin is released and in turn initiates myocardial hypertrophy. We used an in vitro model, where neonatal cardiac myocytes were grown on stretchable plates and examined the effect of stretch on myotrophin gene expression (to mimic pressure overload), an in vivo model using beating non-working hearts exposed to high pressure and three different models of hypertensive rats. Our data showed that both cyclic stretch and exposure to high pressure caused significant increase in the transcript levels of myotrophin followed by expression of beta-myosin heavy chain and atrial natriuretic factor associated with an increase in myocardial protein synthesis. All three models of hypertensive rats also showed a significant increase in myotrophin transcripts. Altogether, our data strongly suggest that stretching of the cells by pressure or volume turns on the myotrophin, which in turn is responsible for the initiation process of myocardial hypertrophy in response to pressure or volume overloaen_US
dc.language.isoenen_US
dc.publisherKLUWER ACADEMIC PUBLen_US
dc.subjectcardiomyocytesen_US
dc.subjectmyotrophin transcripten_US
dc.subjectgene expressionen_US
dc.subjectstretchen_US
dc.subjecthypertensionen_US
dc.titleRegulation of myotrophin gene by pressure overload and stretchen_US
dc.title.alternativeMolecular and Cellular Biochemistryen_US
dc.typeArticleen_US


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