Coding sequence analysis of GNRHR and GPR54 in patients with congenital and adult-onset forms of hypogonadotropic hypogonadism

被引:58
作者
Cerrato, Felecia
Shagoury, Jenna
Kralickova, Milena
Dwyer, Andrew
Falardeau, John
Ozata, Metin
Van Vliet, Guy
Bouloux, Pierre
Hall, Janet E.
Hayes, Frances J.
Pitteloud, Nelly
Martin, Kathryn A.
Welt, Corrine
Seminara, Stephanie B.
机构
[1] Massachusetts Gen Hosp, Reprod Endocrine Unit, Boston, MA 02114 USA
[2] GATA Haydarpasa Training Hosp, Dept Endocrinol, Istanbul, Turkey
[3] Univ Montreal, Dept Pediat, Montreal, PQ H3C 3J7, Canada
[4] Royal Free Hosp, Dept Endocrinol, London NW3 2QG, England
关键词
D O I
10.1530/eje.1.02235
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objective: To determine the frequency of rare nucleotide variants in GNRHR and GPR54 in a large cohort of probands (n=166) with normosmic idiopathic hypogonadotropic hypogonadism (nIHH), characterized by mode of inheritance, testicular volume, and presence or absence of endogenous LH pulsations. Methods: Whenever possible, probands answered detailed questionnaires, underwent full physical exams, and underwent q 10-min frequent blood sampling for LH. Exons segments for GNRHR and GPR54 were screened for mutations. Nucleotide changes were identified as rare variants if they occurred at less than 1% frequency in an ethnically matched control population. Results: Sixty-two percent of male probands were classified as sporadic, meaning that no other family members had delayed puberty or nIHH. In contrast, 61% of female probands were from familial pedigrees, with either autosomal dominant or autosomal recessive inheritance. Patients displayed a broad spectrum of disease severity based on testicular size and endogenous LH pulsations. Twenty-four rare variants were identified in GNRHR (within 15 probands) and seven rare variants in GPR54 (within five probands). Conclusions: Rare variants in GNRHR are more common than GPR54 in a nIHH population.
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页码:S3 / S10
页数:8
相关论文
共 41 条
[11]   Loss-of-function mutations in FGFR1 cause autosomal dominant Kallmann syndrome [J].
Dodé, C ;
Levilliers, J ;
Dupont, JM ;
De Paepe, A ;
Le Dû, N ;
Soussi-Yanicostas, N ;
Coimbra, RS ;
Delmaghani, S ;
Compain-Nouaille, S ;
Baverel, F ;
Pêcheux, C ;
Le Tessier, D ;
Cruaud, C ;
Delpech, M ;
Speleman, F ;
Vermeulen, S ;
Amalfitano, A ;
Bachelot, Y ;
Bouchard, P ;
Cabrol, S ;
Carel, JC ;
Delemarre-van de Waal, H ;
Goulet-Salmon, B ;
Kottler, ML ;
Richard, O ;
Sanchez-Franco, F ;
Saura, R ;
Young, J ;
Petit, C ;
Hardelin, JP .
NATURE GENETICS, 2003, 33 (04) :463-465
[12]   NEUROENDOCRINE REGULATION OF THE CORPUS-LUTEUM IN THE HUMAN - EVIDENCE FOR PULSATILE PROGESTERONE SECRETION [J].
FILICORI, M ;
BUTLER, JP ;
CROWLEY, WF .
JOURNAL OF CLINICAL INVESTIGATION, 1984, 73 (06) :1638-1647
[13]   A GENE DELETED IN KALLMANNS SYNDROME SHARES HOMOLOGY WITH NEURAL CELL-ADHESION AND AXONAL PATH-FINDING MOLECULES [J].
FRANCO, B ;
GUIOLI, S ;
PRAGLIOLA, A ;
INCERTI, B ;
BARDONI, B ;
TONLORENZI, R ;
CARROZZO, R ;
MAESTRINI, E ;
PIERETTI, M ;
TAILLONMILLER, P ;
BROWN, CJ ;
WILLARD, HF ;
LAWRENCE, C ;
PERSICO, MG ;
CAMERINO, G ;
BALLABIO, A .
NATURE, 1991, 353 (6344) :529-536
[14]   Genetic heterogeneity evidenced by low incidence of KAL-1 gene mutations in sporadic cases of gonadotropin-releasing hormone deficiency [J].
Georgopoulos, NA ;
Pralong, FP ;
Seidman, CE ;
Seidman, JG ;
Crowley, WF ;
Vallejo, M .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1997, 82 (01) :213-217
[15]   Anosmin-1 modulates fibroblast growth factor receptor 1 signaling in human gonadotropin-releasing hormone olfactory neuroblasts through a heparan sulfate-dependent mechanism [J].
González-Martínez, D ;
Kim, SH ;
Hu, YL ;
Guimond, S ;
Schofield, J ;
Winyard, P ;
Vannelli, GB ;
Turnbull, J ;
Bouloux, PM .
JOURNAL OF NEUROSCIENCE, 2004, 24 (46) :10384-10392
[16]   A role for kisspeptins in the regulation of gonadotropin secretion in the mouse [J].
Gottsch, ML ;
Cunningham, MJ ;
Smith, JT ;
Popa, SM ;
Acohido, BV ;
Crowley, WF ;
Seminara, S ;
Clifton, DK ;
Steiner, RA .
ENDOCRINOLOGY, 2004, 145 (09) :4073-4077
[17]  
HANSEN P F, 1952, Acta Med Scand Suppl, V266, P457
[18]   Free α-subunit is superior to luteinizing hormone as a marker of gonadotropin-releasing hormone despite desensitization at fast pulse frequencies [J].
Hayes, FJ ;
McNicholl, DJ ;
Schoenfeld, D ;
Marsh, EE ;
Hall, JE .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1999, 84 (03) :1028-1036
[19]   Kisspeptin activation of gonadotropin releasing hormone neurons and regulation of KiSS-1 mRNA in the male rat [J].
Irwig, MS ;
Fraleyb, GS ;
Smith, JT ;
Acohido, BV ;
Popa, SM ;
Cunningham, MJ ;
Gottsch, ML ;
Clifton, DK ;
Steiner, RA .
NEUROENDOCRINOLOGY, 2004, 80 (04) :264-272
[20]   Parallel regulation of membrane trafficking and dominant-negative effects by misrouted gonadotropin-releasing hormone receptor mutants [J].
Knollman, PE ;
Janovick, JA ;
Brothers, SP ;
Conn, PM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (26) :24506-24514