Whole exome sequencing identifies deleterious rare variants in CCDC141 in familial self-limited delayed puberty

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作者
Tansit Saengkaew
Gerard Ruiz-Babot
Alessia David
Alessandra Mancini
Katia Mariniello
Claudia P. Cabrera
Michael R. Barnes
Leo Dunkel
Leonardo Guasti
Sasha R. Howard
机构
[1] Queen Mary University of London,Centre for Endocrinology, William Harvey Research Institute, Barts and the London School of Medicine and Dentistry
[2] Prince of Songkla University,Endocrinology Unit, Department of Paediatrics, Faculty of Medicine
[3] Imperial College London,Department of Life Sciences, Centre for Integrative Systems Biology and Bioinformatics
[4] Queen Mary University of London,Centre for Translational Bioinformatics, William Harvey Research Institute, Barts and the London School of Medicine and Dentistry
[5] Queen Mary University of London,NIHR Barts Cardiovascular Biomedical Research Centre, Barts and The London School of Medicine and Dentistry
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npj Genomic Medicine | / 6卷
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Developmental abnormalities of the gonadotropin-releasing hormone (GnRH) neuronal network result in a range of conditions from idiopathic hypogonadotropic hypogonadism to self-limited delayed puberty. We aimed to discover important underlying regulators of self-limited delayed puberty through interrogation of GnRH pathways. Whole exome sequencing (WES) data consisting of 193 individuals, from 100 families with self-limited delayed puberty, was analysed using a virtual panel of genes related to GnRH development and function (n = 12). Five rare predicted deleterious variants in Coiled-Coil Domain Containing 141 (CCDC141) were identified in 21 individuals from 6 families (6% of the tested cohort). Homology modeling predicted all five variants to be deleterious. CCDC141 mutant proteins showed atypical subcellular localization associated with abnormal distribution of acetylated tubulin, and expression of mutants resulted in a significantly delayed cell migration, demonstrated in transfected HEK293 cells. These data identify mutations in CCDC141 as a frequent finding in patients with self-limited delayed puberty. The mis-localization of acetylated tubulin and reduced cell migration seen with mutant CCDC141 suggests a role of the CCDC141-microtubule axis in GnRH neuronal migration, with heterozygous defects potentially impacting the timing of puberty.
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[1]  
Cariboni A(2007)From nose to fertility: the long migratory journey of gonadotropin-releasing hormone neurons Trends Neurosci. 30 638-644
[2]  
Maggi R(2015)GnRH, anosmia and hypogonadotropic hypogonadism-where are we? Front. Neuroendocrinol. 36 165-177
[3]  
Parnavelas JG(1991)The candidate gene for the X-linked Kallmann syndrome encodes a protein related to adhesion molecules Cell 67 423-435
[4]  
Forni PE(2006)Kallmann syndrome: mutations in the genes encoding prokineticin-2 and prokineticin receptor-2 PLoS Genet. 2 e175-1317
[5]  
Wray S(2019)Delayed puberty—phenotypic diversity, molecular genetic mechanisms and recent discoveries Endocr. Rev. 40 1285-453
[6]  
Legouis R(2012)Clinical practice. Delayed puberty N. Engl. J. Med. 366 443-1620
[7]  
Dodé C(2002)Delayed puberty: analysis of a large case series from an academic center J. Clin. Endocrinol. Metab. 87 1613-153
[8]  
Howard SR(2017)Congenital hypogonadotropic hypogonadism, functional hypogonadotropism or constitutional delay of growth and puberty? An analysis of a large patient series from a single tertiary center Hum. Reprod. 32 147-1385
[9]  
Dunkel L(2015)Evaluation of 451 Danish boys with delayed puberty: diagnostic use of a new puberty nomogram and effects of oral testosterone therapy J. Clin. Endocrinol. Metab. 100 1376-728
[10]  
Palmert MR(2008)Patterns of inheritance of constitutional delay of growth and puberty in families of adolescent girls and boys referred to specialist pediatric care J. Clin. Endocrinol. Metab. 93 723-652