Literature DB >> 18223213

Large deletions of the PRKAR1A gene in Carney complex.

Anelia Horvath1, Ioannis Bossis, Christoforos Giatzakis, Elizabeth Levine, Frank Weinberg, Elise Meoli, Audrey Robinson-White, Jennifer Siegel, Payal Soni, Lionel Groussin, Ludmila Matyakhina, Somya Verma, Elaine Remmers, Maria Nesterova, J Aidan Carney, Jérôme Bertherat, Constantine A Stratakis.   

Abstract

PURPOSE: Since the identification of PRKAR1A mutations in Carney complex, substitutions and small insertions/deletions have been found in approximately 70% of the patients. To date, no germ-line PRKAR1A deletion and/or insertion exceeded a few base pairs (up to 15). Although a few families map to chromosome 2, it is possible that current sequencing techniques do not detect larger gene changes in PRKAR1A -- mutation-negative individuals with Carney complex. EXPERIMENTAL
DESIGN: To screen for gross alterations of the PRKAR1A gene, we applied Southern hybridization analysis on 36 unrelated Carney complex patients who did not have small intragenic mutations or large aberrations in PRKAR1A, including the probands from two kindreds mapping to chromosome 2.
RESULTS: We found large PRKAR1A deletions in the germ-line of two patients with Carney complex, both sporadic cases; no changes were identified in the remaining patients, including the two chromosome-2-mapping families. In the first patient, the deletion is expected to lead to decreased PRKAR1A mRNA levels but no other effects on the protein; the molecular phenotype is predicted to be PRKAR1A haploinsufficiency, consistent with the majority of PRKAR1A mutations causing Carney complex. In the second patient, the deletion led to in-frame elimination of exon 3 and the expression of a shorter protein, lacking the primary site for interaction with the catalytic protein kinase A subunit. In vitro transfection studies of the mutant PRKAR1A showed impaired ability to bind cyclic AMP and activation of the protein kinase A enzyme. The patient bearing this mutation had a more-severe-than-average Carney complex phenotype that included the relatively rare psammomatous melanotic schwannoma.
CONCLUSIONS: Large PRKAR1A deletions may be responsible for Carney complex in patients that do not have PRKAR1A gene defects identifiable by sequencing. Preliminary data indicate that these patients may have a different phenotype especially if their defect results in an expressed, abnormal version of the PRKAR1A protein.

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Year:  2008        PMID: 18223213     DOI: 10.1158/1078-0432.CCR-07-1155

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  38 in total

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Review 2.  Protein kinase A defects and cortisol-producing adrenal tumors.

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Journal:  Curr Opin Endocrinol Diabetes Obes       Date:  2015-06       Impact factor: 3.243

Review 3.  Acromegaly in Carney complex.

Authors:  T Cuny; T T Mac; P Romanet; H Dufour; I Morange; F Albarel; A Lagarde; F Castinetti; T Graillon; M O North; A Barlier; T Brue
Journal:  Pituitary       Date:  2019-10       Impact factor: 4.107

4.  Cutaneous signs are important in the diagnosis of the rare neoplasia syndrome Carney complex.

Authors:  Anthony Vandersteen; Jess Turnbull; Wajanat Jan; John Simpson; Sebastian Lucas; David Anderson; Jean-Pierre Lin; Constantine Stratakis; Gabriella Pichert; Ming Lim
Journal:  Eur J Pediatr       Date:  2009-02-14       Impact factor: 3.183

Review 5.  Carney complex and McCune Albright syndrome: an overview of clinical manifestations and human molecular genetics.

Authors:  Paraskevi Salpea; Constantine A Stratakis
Journal:  Mol Cell Endocrinol       Date:  2013-09-05       Impact factor: 4.102

6.  Anxiety-like behavior and other consequences of early life stress in mice with increased protein kinase A activity.

Authors:  Maddalena Ugolini; Margaret F Keil; Enrica Paradiso; John Wu; Constantine A Stratakis
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7.  Mutations and polymorphisms in the gene encoding regulatory subunit type 1-alpha of protein kinase A (PRKAR1A): an update.

Authors:  Anélia Horvath; Jérôme Bertherat; Lionel Groussin; Marine Guillaud-Bataille; Kitman Tsang; Laure Cazabat; Rosella Libé; Elaine Remmers; Fernande René-Corail; Fabio Rueda Faucz; Eric Clauser; Alain Calender; Xavier Bertagna; J Aidan Carney; Constantine A Stratakis
Journal:  Hum Mutat       Date:  2010-04       Impact factor: 4.878

8.  Protein kinase A effects of an expressed PRKAR1A mutation associated with aggressive tumors.

Authors:  Elise Meoli; Ioannis Bossis; Laure Cazabat; Manos Mavrakis; Anelia Horvath; Sotiris Stergiopoulos; Miriam L Shiferaw; Glawdys Fumey; Karine Perlemoine; Michael Muchow; Audrey Robinson-White; Frank Weinberg; Maria Nesterova; Yianna Patronas; Lionel Groussin; Jérôme Bertherat; Constantine A Stratakis
Journal:  Cancer Res       Date:  2008-05-01       Impact factor: 12.701

9.  Mutations in regulatory subunit type 1A of cyclic adenosine 5'-monophosphate-dependent protein kinase (PRKAR1A): phenotype analysis in 353 patients and 80 different genotypes.

Authors:  Jérôme Bertherat; Anélia Horvath; Lionel Groussin; Sophie Grabar; Sosipatros Boikos; Laure Cazabat; Rosella Libe; Fernande René-Corail; Sotirios Stergiopoulos; Isabelle Bourdeau; Thalia Bei; Eric Clauser; Alain Calender; Lawrence S Kirschner; Xavier Bertagna; J Aidan Carney; Constantine A Stratakis
Journal:  J Clin Endocrinol Metab       Date:  2009-03-17       Impact factor: 5.958

Review 10.  Clinical and molecular genetics of acromegaly: MEN1, Carney complex, McCune-Albright syndrome, familial acromegaly and genetic defects in sporadic tumors.

Authors:  Anelia Horvath; Constantine A Stratakis
Journal:  Rev Endocr Metab Disord       Date:  2008-03       Impact factor: 6.514

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