Literature DB >> 26166479

The Genetic Basis of Mendelian Phenotypes: Discoveries, Challenges, and Opportunities.

Jessica X Chong1, Kati J Buckingham1, Shalini N Jhangiani2, Corinne Boehm3, Nara Sobreira3, Joshua D Smith4, Tanya M Harrell1, Margaret J McMillin1, Wojciech Wiszniewski5, Tomasz Gambin5, Zeynep H Coban Akdemir5, Kimberly Doheny6, Alan F Scott7, Dimitri Avramopoulos7, Aravinda Chakravarti7, Julie Hoover-Fong3, Debra Mathews8, P Dane Witmer6, Hua Ling6, Kurt Hetrick6, Lee Watkins6, Karynne E Patterson4, Frederic Reinier4, Elizabeth Blue9, Donna Muzny2, Martin Kircher4, Kaya Bilguvar10, Francesc López-Giráldez10, V Reid Sutton5, Holly K Tabor11, Suzanne M Leal12, Murat Gunel10, Shrikant Mane10, Richard A Gibbs13, Eric Boerwinkle14, Ada Hamosh3, Jay Shendure4, James R Lupski15, Richard P Lifton16, David Valle3, Deborah A Nickerson4, Michael J Bamshad17.   

Abstract

Discovering the genetic basis of a Mendelian phenotype establishes a causal link between genotype and phenotype, making possible carrier and population screening and direct diagnosis. Such discoveries also contribute to our knowledge of gene function, gene regulation, development, and biological mechanisms that can be used for developing new therapeutics. As of February 2015, 2,937 genes underlying 4,163 Mendelian phenotypes have been discovered, but the genes underlying ∼50% (i.e., 3,152) of all known Mendelian phenotypes are still unknown, and many more Mendelian conditions have yet to be recognized. This is a formidable gap in biomedical knowledge. Accordingly, in December 2011, the NIH established the Centers for Mendelian Genomics (CMGs) to provide the collaborative framework and infrastructure necessary for undertaking large-scale whole-exome sequencing and discovery of the genetic variants responsible for Mendelian phenotypes. In partnership with 529 investigators from 261 institutions in 36 countries, the CMGs assessed 18,863 samples from 8,838 families representing 579 known and 470 novel Mendelian phenotypes as of January 2015. This collaborative effort has identified 956 genes, including 375 not previously associated with human health, that underlie a Mendelian phenotype. These results provide insight into study design and analytical strategies, identify novel mechanisms of disease, and reveal the extensive clinical variability of Mendelian phenotypes. Discovering the gene underlying every Mendelian phenotype will require tackling challenges such as worldwide ascertainment and phenotypic characterization of families affected by Mendelian conditions, improvement in sequencing and analytical techniques, and pervasive sharing of phenotypic and genomic data among researchers, clinicians, and families.
Copyright © 2015 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 26166479      PMCID: PMC4573249          DOI: 10.1016/j.ajhg.2015.06.009

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  102 in total

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9.  Increased frequency of de novo copy number variants in congenital heart disease by integrative analysis of single nucleotide polymorphism array and exome sequence data.

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10.  Challenges and solutions for gene identification in the presence of familial locus heterogeneity.

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  267 in total

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5.  CRISPR/Cas9-Mediated Scanning for Regulatory Elements Required for HPRT1 Expression via Thousands of Large, Programmed Genomic Deletions.

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Review 6.  High Throughput Sequencing and Assessing Disease Risk.

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Review 7.  High-throughput mouse phenomics for characterizing mammalian gene function.

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Review 9.  Integration of Drosophila and Human Genetics to Understand Notch Signaling Related Diseases.

Authors:  Jose L Salazar; Shinya Yamamoto
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10.  Functional Dysregulation of CDC42 Causes Diverse Developmental Phenotypes.

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Journal:  Am J Hum Genet       Date:  2018-01-25       Impact factor: 11.025

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