Literature DB >> 16817826

Genetic features of the X chromosome affect pubertal development and testicular degeneration in adolescent boys with Klinefelter syndrome.

Anne M Wikström1, Jodie N Painter, Taneli Raivio, Kristiina Aittomäki, Leo Dunkel.   

Abstract

OBJECTIVE: To investigate how genetic features of the X chromosome influence growth, pubertal development and testicular degeneration in adolescent boys with Klinefelter syndrome (KS). Previous studies have suggested that genetic features of the X chromosome may contribute to the wide phenotypic variation in KS.
DESIGN: A prospective clinical study. PATIENTS: Fourteen nonmosaic 47,XXY boys, aged 10-13.9 years. MEASUREMENTS: The relationship of genetic features of the X chromosome, including parental origin of X chromosomes, the CAG repeat length of the androgen receptor (AR) gene, and X inactivation with progression of pubertal development, growth and testicular function in KS boys.
RESULTS: Paternal (47,XmXpY, n = 3) as compared to maternal (47,XmXmY, n = 11) origin of the supernumerary X chromosome was associated with a later onset of puberty. In 47,XmXpY patients, serum LH concentrations increased above 1.0 IU/l at 12.5 +/- 0.6 years (mean +/- SD), Tanner stage P2 occurred at 12.5 +/- 0.7 years, and pubertal acceleration of growth was noted at 13.9 +/- 1.4 years and peak velocity at 14.5 +/- 0.8 years. All of these occurred 1.3-1.9 years later than in 47,XmXmY patients (P = 0.01-0.09). In 47,XmXmY subjects, CAG repeat length (range 17-26) correlated with age at which serum LH level first exceeded 1.0 IU/l (rs = 0.63, P = 0.06, n = 10) and testosterone 1.0 nmol/l (28.8 ng/dl) (rs = 0.78, P = 0.02, n = 10).
CONCLUSIONS: Paternal origin of the supernumerary X chromosome is associated with later onset of puberty and longer CAG repeats of the AR with later pubertal reactivation of the pituitary-testicular axis in KS boys. Identifying genetic factors that affect the phenotype may lead to a better understanding of the pathogenesis of KS.

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Year:  2006        PMID: 16817826     DOI: 10.1111/j.1365-2265.2006.02554.x

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


  11 in total

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Review 2.  ART strategies in Klinefelter syndrome.

Authors:  Wei Chen; Ming Zhu Bai; Yixia Yang; Di Sun; Sufang Wu; Jian Sun; Yu Wu; Youji Feng; Youheng Wei; Zijiang Chen; Zhenbo Zhang
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3.  Behavioral and social phenotypes in boys with 47,XYY syndrome or 47,XXY Klinefelter syndrome.

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Review 4.  Effects of sex chromosome aneuploidies on brain development: evidence from neuroimaging studies.

Authors:  Rhoshel K Lenroot; Nancy Raitano Lee; Jay N Giedd
Journal:  Dev Disabil Res Rev       Date:  2009

Review 5.  Advances in the Interdisciplinary Care of Children with Klinefelter Syndrome.

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6.  Turner syndrome and the evolution of human sexual dimorphism.

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Journal:  Evol Appl       Date:  2008-02-22       Impact factor: 5.183

Review 7.  Klinefelter syndrome (KS): genetics, clinical phenotype and hypogonadism.

Authors:  M Bonomi; V Rochira; D Pasquali; G Balercia; E A Jannini; A Ferlin
Journal:  J Endocrinol Invest       Date:  2016-09-19       Impact factor: 4.256

Review 8.  Genes that escape from X-chromosome inactivation: Potential contributors to Klinefelter syndrome.

Authors:  Maria Jose Navarro-Cobos; Bradley P Balaton; Carolyn J Brown
Journal:  Am J Med Genet C Semin Med Genet       Date:  2020-05-22       Impact factor: 3.908

9.  Using information technology and social networking for recruitment of research participants: experience from an exploratory study of pediatric Klinefelter syndrome.

Authors:  Sharron Close; Arlene Smaldone; Ilene Fennoy; Nancy Reame; Margaret Grey
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Review 10.  Long noncoding RNAs in imprinting and X chromosome inactivation.

Authors:  Joseph M Autuoro; Stephan P Pirnie; Gordon G Carmichael
Journal:  Biomolecules       Date:  2014-01-07
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