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Newly identified NO-Sensor guanylyl cyclase/connexin 43 association is involved in cardiac electrical function
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نویسنده
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crassous p.-a. ,shu p. ,huang c. ,gordan r. ,brouckaert p. ,lampe p.d. ,xie l.-h. ,beuve a.
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منبع
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journal of the american heart association - 2017 - دوره : 6 - شماره : 12
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چکیده
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Background--guanylyl cyclase,a heme-containing α1β1 heterodimer (gc1),produces cgmp in response to nitric oxide (no) stimulation. the no-gc1-cgmp pathway negatively regulates cardiomyocyte contractility and protects against cardiac hypertrophy-related remodeling. we recently reported that the β1 subunit of gc1 is detected at the intercalated disc with connexin 43 (cx43). cx43 forms gap junctions (gjs) at the intercalated disc that are responsible for electrical propagation. we sought to determine whether there is a functional association between gc1 and cx43 and its role in cardiac homeostasis. methods and results--gc1 and cx43 immunostaining at the intercalated disc and coimmunoprecipitation from membrane fraction indicate that gc1 and cx43 are associated. mice lacking the α subunit of gc1 (gcα1 knockout mice) displayed a significant decrease in gj function (dye-spread assay) and cx43 membrane lateralization. in a cardiac-hypertrophic model,angiotensin ii treatment disrupted the gc1-cx43 association and induced significant cx43 membrane lateralization,which was exacerbated in gcα1 knockout mice. cx43 lateralization correlated with decreased cx43-containing gjs at the intercalated disc,predictors of electrical dysfunction. accordingly,an ecg revealed that angiotensin ii-treated gcα1 knockout mice had impaired ventricular electrical propagation. the phosphorylation level of cx43 at serine 365,a protein-kinase a upregulated site involved in trafficking/assembly of gjs,was decreased in these models. conclusions--gc1 modulates ventricular cx43 location,hence gj function,and partially protects from electrical dysfunction in an angiotensin ii hypertrophy model. disruption of the no-cgmp pathway is associated with cardiac electrical disturbance and abnormal cx43 phosphorylation. this previously unknown no/cx43 signaling could be a protective mechanism against stressinduced arrhythmia. © 2017 the authors.
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کلیدواژه
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Arrhythmia; Cardiac function; Cardiovascular disease; CGMP; Connexin 43; Guanylyl cyclase; Nitric oxide
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آدرس
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departments of pharmacology,physiology and neuroscience,new jersey medical school-rutgers,newark,nj, United States, departments of pharmacology,physiology and neuroscience,new jersey medical school-rutgers,newark,nj, United States, departments of pharmacology,physiology and neuroscience,new jersey medical school-rutgers,newark,nj, United States, departments of cell biology and molecular medicine,new jersey medical school-rutgers,newark,nj, United States, department of biomedical molecular biology,ghent university,ghent, Belgium, human biology divisions,fred hutchinson cancer research center,seattle,wa, United States, departments of cell biology and molecular medicine,new jersey medical school-rutgers,newark,nj, United States, departments of pharmacology,physiology and neuroscience,new jersey medical school-rutgers,newark,nj, United States
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Authors
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