| Literature DB >> 33434492 |
Na Chen1, Sen Zhao2, Angad Jolly3, Lianlei Wang4, Hongxin Pan5, Jian Yuan6, Shaoke Chen7, André Koch8, Congcong Ma1, Weijie Tian1, Ziqi Jia1, Jia Kang1, Lina Zhao2, Chenglu Qin5, Xin Fan7, Katharina Rall8, Zeynep Coban-Akdemir9, Zefu Chen2, Shalini Jhangiani9, Ze Liang1, Yuchen Niu10, Xiaoxin Li10, Zihui Yan2, Yong Wu10, Shuangshuang Dong11, Chengcheng Song11, Guixing Qiu12, Shuyang Zhang13, Pengfei Liu14, Jennifer E Posey9, Feng Zhang11, Guangnan Luo5, Zhihong Wu15, Jianzhong Su6, Jianguo Zhang2, Eugenia Y Chen16, Konstantinos Rouskas17, Stavros Glentis18, Flora Bacopoulou19, Efthymios Deligeoroglou20, George Chrousos19, Stanislas Lyonnet21, Michel Polak21, Carla Rosenberg22, Irene Dingeldein23, Ximena Bonilla24, Christelle Borel24, Richard A Gibbs25, Jennifer E Dietrich26, Antigone S Dimas27, Stylianos E Antonarakis28, Sara Y Brucker8, James R Lupski29, Nan Wu30, Lan Zhu31.
Abstract
Mayer-Rokitansky-Küster-Hauser syndrome (MRKHS) is associated with congenital absence of the uterus, cervix, and the upper part of the vagina; it is a sex-limited trait. Disrupted development of the Müllerian ducts (MD)/Wölffian ducts (WD) through multifactorial mechanisms has been proposed to underlie MRKHS. In this study, exome sequencing (ES) was performed on a Chinese discovery cohort (442 affected subjects and 941 female control subjects) and a replication MRKHS cohort (150 affected subjects of mixed ethnicity from North America, South America, and Europe). Phenotypic follow-up of the female reproductive system was performed on an additional cohort of PAX8-associated congenital hypothyroidism (CH) (n = 5, Chinese). By analyzing 19 candidate genes essential for MD/WD development, we identified 12 likely gene-disrupting (LGD) variants in 7 genes: PAX8 (n = 4), BMP4 (n = 2), BMP7 (n = 2), TBX6 (n = 1), HOXA10 (n = 1), EMX2 (n = 1), and WNT9B (n = 1), while LGD variants in these genes were not detected in control samples (p = 1.27E-06). Interestingly, a sex-limited penetrance with paternal inheritance was observed in multiple families. One additional PAX8 LGD variant from the replication cohort and two missense variants from both cohorts were revealed to cause loss-of-function of the protein. From the PAX8-associated CH cohort, we identified one individual presenting a syndromic condition characterized by CH and MRKHS (CH-MRKHS). Our study demonstrates the comprehensive utilization of knowledge from developmental biology toward elucidating genetic perturbations, i.e., rare pathogenic alleles involving the same loci, contributing to human birth defects.Entities:
Keywords: MRKHS; MRKHS, Müllerian duct; Mayer-Rokitansky-Küster-Hauser syndrome; Müllerian aplasia; PAX8; Wölffian duct
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Year: 2021 PMID: 33434492 PMCID: PMC7896104 DOI: 10.1016/j.ajhg.2020.12.014
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025