Literature DB >> 29655603

New technologies to uncover the molecular basis of disorders of sex development.

Hayk Barseghyan1, Emmanuèle C Délot2, Eric Vilain3.   

Abstract

The elegant developmental biology experiments conducted in the 1940s by French physiologist Alfred Jost demonstrated that the sexual phenotype of a mammalian embryo depended whether the embryonic gonad develops into a testis or not. In humans, anomalies in the processes that regulate development of chromosomal, gonadal or anatomic sex result in a spectrum of conditions termed Disorders/Differences of Sex Development (DSD). Each of these conditions is rare, and understanding of their genetic etiology is still incomplete. Historically, DSD diagnoses have been difficult to establish due to the lack of standardization of anatomical and endocrine phenotyping procedures as well as genetic testing. Yet, a definitive diagnosis is critical for optimal management of the medical and psychosocial challenges associated with DSD conditions. The advent in the clinical realm of next-generation sequencing methods, with constantly decreasing price and turnaround time, has revolutionized the diagnostic process. Here we review the successes and limitations of the genetic methods currently available for DSD diagnosis, including Sanger sequencing, karyotyping, exome sequencing and chromosomal microarrays. While exome sequencing provides higher diagnostic rates, many patients still remain undiagnosed. Newer approaches, such as whole-genome sequencing and whole-genome mapping, along with gene expression studies, have the potential to identify novel DSD-causing genes and significantly increase total diagnostic yield, hopefully shortening the patient's journey to an accurate diagnosis and enhancing health-related quality-of-life outcomes for patients and families.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  DSD; Exome; Genome mapping; Testis development; Whole genome sequencing

Mesh:

Year:  2018        PMID: 29655603      PMCID: PMC7249677          DOI: 10.1016/j.mce.2018.04.003

Source DB:  PubMed          Journal:  Mol Cell Endocrinol        ISSN: 0303-7207            Impact factor:   4.102


  96 in total

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Review 2.  Detection and reporting of homozygosity associated with consanguinity in the clinical laboratory.

Authors:  Kristen Lipscomb Sund; Catherine Weaver Rehder
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3.  Diagnostic yield of targeted gene panel sequencing to identify the genetic etiology of disorders of sex development.

Authors:  Ja Hye Kim; Eungu Kang; Sun Hee Heo; Gu-Hwan Kim; Ja-Hyun Jang; Eun-Hae Cho; Beom Hee Lee; Han-Wook Yoo; Jin-Ho Choi
Journal:  Mol Cell Endocrinol       Date:  2017-01-24       Impact factor: 4.102

Review 4.  Disorders of sex development: new genes, new concepts.

Authors:  Makoto Ono; Vincent R Harley
Journal:  Nat Rev Endocrinol       Date:  2012-12-18       Impact factor: 43.330

5.  Effectiveness of exome and genome sequencing guided by acuity of illness for diagnosis of neurodevelopmental disorders.

Authors:  Sarah E Soden; Carol J Saunders; Laurel K Willig; Emily G Farrow; Laurie D Smith; Josh E Petrikin; Jean-Baptiste LePichon; Neil A Miller; Isabelle Thiffault; Darrell L Dinwiddie; Greyson Twist; Aaron Noll; Bryce A Heese; Lee Zellmer; Andrea M Atherton; Ahmed T Abdelmoity; Nicole Safina; Sarah S Nyp; Britton Zuccarelli; Ingrid A Larson; Ann Modrcin; Suzanne Herd; Mitchell Creed; Zhaohui Ye; Xuan Yuan; Robert A Brodsky; Stephen F Kingsmore
Journal:  Sci Transl Med       Date:  2014-12-03       Impact factor: 17.956

6.  ACMG recommendations for standards for interpretation and reporting of sequence variations: Revisions 2007.

Authors:  C Sue Richards; Sherri Bale; Daniel B Bellissimo; Soma Das; Wayne W Grody; Madhuri R Hegde; Elaine Lyon; Brian E Ward
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7.  Male development of chromosomally female mice transgenic for Sry.

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9.  The clinical application of genome-wide sequencing for monogenic diseases in Canada: Position Statement of the Canadian College of Medical Geneticists.

Authors:  Kym Boycott; Taila Hartley; Shelin Adam; Francois Bernier; Karen Chong; Bridget A Fernandez; Jan M Friedman; Michael T Geraghty; Stacey Hume; Bartha M Knoppers; Anne-Marie Laberge; Jacek Majewski; Roberto Mendoza-Londono; M Stephen Meyn; Jacques L Michaud; Tanya N Nelson; Julie Richer; Bekim Sadikovic; David L Skidmore; Tracy Stockley; Sherry Taylor; Clara van Karnebeek; Ma'n H Zawati; Julie Lauzon; Christine M Armour
Journal:  J Med Genet       Date:  2015-05-07       Impact factor: 6.318

10.  Diagnostic Application of Targeted Next-Generation Sequencing of 80 Genes Associated with Disorders of Sexual Development.

Authors:  Yanjie Fan; Xia Zhang; Lili Wang; Ruifang Wang; Zhuo Huang; Yu Sun; Ruen Yao; Xiaodong Huang; Jun Ye; Lianshu Han; Wenjuan Qiu; Huiwen Zhang; Lili Liang; Xuefan Gu; Yongguo Yu
Journal:  Sci Rep       Date:  2017-03-15       Impact factor: 4.379

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4.  Identifying the Resource Needs of Young People with Differences of Sex Development.

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Review 5.  Applying Single-Cell Analysis to Gonadogenesis and DSDs (Disorders/Differences of Sex Development).

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