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Cushing's syndrome and fetal features resurgence in adrenal cortex-specific Prkar1a knockout mice
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نویسنده
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sahut-barnola i. ,de joussineau c. ,val p. ,lambert-langlais s. ,damon c. ,lefrançois-martinez a. ,pointud j.-c. ,marceau g. ,sapin v. ,tissier f. ,ragazzon b. ,bertherat j. ,kirschner l.s. ,stratakis c.a. ,martinez a.
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منبع
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plos genetics - 2010 - دوره : 6 - شماره : 6 - صفحه:1 -16
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چکیده
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Carney complex (cnc) is an inherited neoplasia syndrome with endocrine overactivity. its most frequent endocrine manifestation is primary pigmented nodular adrenocortical disease (ppnad),a bilateral adrenocortical hyperplasia causing pituitary-independent cushing's syndrome. inactivating mutations in prkar1a,a gene encoding the type 1α-regulatory subunit (r1α) of the camp-dependent protein kinase (pka) have been found in 80% of cnc patients with cushing's syndrome. to demonstrate the implication of r1a loss in the initiation and development of ppnad,we generated mice lacking prkar1a specifically in the adrenal cortex (adko). adko mice develop pituitary-independent cushing's syndrome with increased pka activity. this leads to autonomous steroidogenic genes expression and deregulated adreno-cortical cells differentiation,increased proliferation and resistance to apoptosis. unexpectedly,r1a loss results in improper maintenance and centrifugal expansion of cortisol-producing fetal adrenocortical cells with concomitant regression of adult cortex. our data provide the first in vivo evidence that loss of r1a is sufficient to induce autonomous adrenal hyper-activity and bilateral hyperplasia,both observed in human ppnad. furthermore,this model demonstrates that deregulated pka activity favors the emergence of a new cell population potentially arising from the fetal adrenal,giving new insight into the mechanisms leading to ppnad. © 2010 sahut-barnola et al.
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آدرس
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cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére,france,laboratoire de biochimie,centre de biologie,chu g.montpied,clermont-ferrand, France, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére,france,laboratoire de biochimie,centre de biologie,chu g.montpied,clermont-ferrand, France, inserm u567,cnrs umr8104,institut cochin,department of endocrinologie,métabolisme,et cancer,université paris descartes,ap-hp hôpital cochin, France, inserm u567,cnrs umr8104,institut cochin,department of endocrinologie,métabolisme,et cancer,université paris descartes,ap-hp hôpital cochin, France, inserm u567,cnrs umr8104,institut cochin,department of endocrinologie,métabolisme,et cancer,université paris descartes,ap-hp hôpital cochin, France, department of molecular virology,immunology,and medical genetics,ohio state university,columbus,oh,united states,division of endocrinology,diabetes,and metabolism,department of internal medicine,ohio state university,columbus,oh, United States, section on endocrinology and genetics,eunice kennedy shriver national institute of child health and humandevelopment,nih,bethesda,md, United States, cnrs umr6247,génétique reproduction et développement (gred),clermont université,aubiére, France
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Authors
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