Literature DB >> 12354125

Sequence analysis of the PRKAR1A gene in sporadic somatotroph and other pituitary tumours.

Gregory A Kaltsas1, Blerina Kola, Ninetta Borboli, Damian G Morris, Maria Gueorguiev, Frankie M Swords, Sándor Czirják, Lawrence S Kirschner, Constantine A Stratakis, Márta Korbonits, Ashley B Grossman.   

Abstract

OBJECTIVE: Carney complex (CNC) is an autosomal dominant multiple neoplasia syndrome featuring cardiac, endocrine, cutaneous and neural tumours, as well as a variety of pigmented lesions of the skin and mucosa. Pituitary GH-secreting tumours are found in approximately 10% of patients with CNC. One of the genes responsible for CNC, the PRKAR1A gene located on human chromosome 17q22-24, has recently been cloned. This represents a putative tumour suppressor gene, coding for the type 1alpha regulatory subunit of protein kinase A (PKA), which is found to be mutated in approximately half of the patients with CNC. However, it is currently unclear as to whether similar mutations occur in sporadic pituitary tumours. We have therefore investigated a series of GH-secreting and other pituitary tumours for sequence abnormalities in the PRKAR1A gene. The mRNA produced by the PRKAR1A undergoes decay if it codes for a truncated protein; we therefore also determined PRKAR1A mRNA levels in the tumours, and compared them with known mutant PRKAR1A-carrying lymphocyte samples.
METHODS: We extracted RNA from a series of pituitary tumours, reverse transcribed it to cDNA, and directly sequenced the PRKAR1A coding sequence in 17 GH-secreting, three prolactin-secreting, three ACTH-secreting, one FSH-secreting and 10 nonfunctioning pituitary tumours. Lymphocyte and tumour tissue RNA from two patients with CNC was used as positive controls. Using duplex polymerase chain reaction (PCR) with the PRKAR1A and the "housekeeping" gene GAPDH, we determined the relative expression of the PRKAR1A gene in the unknown as well as in the positive control samples. RESULTS AND
CONCLUSION: No mutations were found in any of the exons sequenced. Relative mRNA expression was not decreased in any of the sporadic pituitary tumour samples. The present data thus do not suggest a major role for the PRKAR1A tumour suppressor gene in sporadic GH-secreting or other pituitary tumours.

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Year:  2002        PMID: 12354125     DOI: 10.1046/j.1365-2265.2002.01643.x

Source DB:  PubMed          Journal:  Clin Endocrinol (Oxf)        ISSN: 0300-0664            Impact factor:   3.478


  17 in total

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2.  The role of germline AIP, MEN1, PRKAR1A, CDKN1B and CDKN2C mutations in causing pituitary adenomas in a large cohort of children, adolescents, and patients with genetic syndromes.

Authors:  C A Stratakis; M A Tichomirowa; S Boikos; M F Azevedo; M Lodish; M Martari; S Verma; A F Daly; M Raygada; M F Keil; J Papademetriou; L Drori-Herishanu; A Horvath; K M Tsang; M Nesterova; S Franklin; J-F Vanbellinghen; V Bours; R Salvatori; A Beckers
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3.  Anterior pituitary adenomas: inherited syndromes, novel genes and molecular pathways.

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4.  Progress in Endocrine Neoplasia.

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Review 8.  The molecular biology of pituitary tumors: a personal perspective.

Authors:  Ashley B Grossman
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9.  AIP Mutations are not identified in patients with sporadic pituitary adenomas.

Authors:  Rebecca DiGiovanni; Stefano Serra; Shereen Ezzat; Sylvia L Asa
Journal:  Endocr Pathol       Date:  2007       Impact factor: 3.943

10.  Pituitary-specific knockout of the Carney complex gene Prkar1a leads to pituitary tumorigenesis.

Authors:  Zhirong Yin; Lisa Williams-Simons; A F Parlow; Sylvia Asa; Lawrence S Kirschner
Journal:  Mol Endocrinol       Date:  2007-11-01
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