Literature DB >> 27131873

Exploiting aberrant mRNA expression in autism for gene discovery and diagnosis.

Jinting Guan1,2, Ence Yang2,3, Jizhou Yang2, Yong Zeng1,2, Guoli Ji4,5, James J Cai6,7.   

Abstract

Autism spectrum disorder (ASD) is characterized by substantial phenotypic and genetic heterogeneity, which greatly complicates the identification of genetic factors that contribute to the disease. Study designs have mainly focused on group differences between cases and controls. The problem is that, by their nature, group difference-based methods (e.g., differential expression analysis) blur or collapse the heterogeneity within groups. By ignoring genes with variable within-group expression, an important axis of genetic heterogeneity contributing to expression variability among affected individuals has been overlooked. To this end, we develop a new gene expression analysis method-aberrant gene expression analysis, based on the multivariate distance commonly used for outlier detection. Our method detects the discrepancies in gene expression dispersion between groups and identifies genes with significantly different expression variability. Using this new method, we re-visited RNA sequencing data generated from post-mortem brain tissues of 47 ASD and 57 control samples. We identified 54 functional gene sets whose expression dispersion in ASD samples is more pronounced than that in controls, as well as 76 co-expression modules present in controls but absent in ASD samples due to ASD-specific aberrant gene expression. We also exploited aberrantly expressed genes as biomarkers for ASD diagnosis. With a whole blood expression data set, we identified three aberrantly expressed gene sets whose expression levels serve as discriminating variables achieving >70 % classification accuracy. In summary, our method represents a novel discovery and diagnostic strategy for ASD. Our findings may help open an expression variability-centered research avenue for other genetically heterogeneous disorders.

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Year:  2016        PMID: 27131873     DOI: 10.1007/s00439-016-1673-7

Source DB:  PubMed          Journal:  Hum Genet        ISSN: 0340-6717            Impact factor:   4.132


  85 in total

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Authors:  Tiziano Pramparo; Karen Pierce; Michael V Lombardo; Cynthia Carter Barnes; Steven Marinero; Clelia Ahrens-Barbeau; Sarah S Murray; Linda Lopez; Ronghui Xu; Eric Courchesne
Journal:  JAMA Psychiatry       Date:  2015-04       Impact factor: 21.596

3.  Autism genome-wide copy number variation reveals ubiquitin and neuronal genes.

Authors:  Joseph T Glessner; Kai Wang; Guiqing Cai; Olena Korvatska; Cecilia E Kim; Shawn Wood; Haitao Zhang; Annette Estes; Camille W Brune; Jonathan P Bradfield; Marcin Imielinski; Edward C Frackelton; Jennifer Reichert; Emily L Crawford; Jeffrey Munson; Patrick M A Sleiman; Rosetta Chiavacci; Kiran Annaiah; Kelly Thomas; Cuiping Hou; Wendy Glaberson; James Flory; Frederick Otieno; Maria Garris; Latha Soorya; Lambertus Klei; Joseph Piven; Kacie J Meyer; Evdokia Anagnostou; Takeshi Sakurai; Rachel M Game; Danielle S Rudd; Danielle Zurawiecki; Christopher J McDougle; Lea K Davis; Judith Miller; David J Posey; Shana Michaels; Alexander Kolevzon; Jeremy M Silverman; Raphael Bernier; Susan E Levy; Robert T Schultz; Geraldine Dawson; Thomas Owley; William M McMahon; Thomas H Wassink; John A Sweeney; John I Nurnberger; Hilary Coon; James S Sutcliffe; Nancy J Minshew; Struan F A Grant; Maja Bucan; Edwin H Cook; Joseph D Buxbaum; Bernie Devlin; Gerard D Schellenberg; Hakon Hakonarson
Journal:  Nature       Date:  2009-04-28       Impact factor: 49.962

4.  Strong association of de novo copy number mutations with autism.

Authors:  Jonathan Sebat; B Lakshmi; Dheeraj Malhotra; Jennifer Troge; Christa Lese-Martin; Tom Walsh; Boris Yamrom; Seungtai Yoon; Alex Krasnitz; Jude Kendall; Anthony Leotta; Deepa Pai; Ray Zhang; Yoon-Ha Lee; James Hicks; Sarah J Spence; Annette T Lee; Kaija Puura; Terho Lehtimäki; David Ledbetter; Peter K Gregersen; Joel Bregman; James S Sutcliffe; Vaidehi Jobanputra; Wendy Chung; Dorothy Warburton; Mary-Claire King; David Skuse; Daniel H Geschwind; T Conrad Gilliam; Kenny Ye; Michael Wigler
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Authors:  Brian J O'Roak; Laura Vives; Wenqing Fu; Jarrett D Egertson; Ian B Stanaway; Ian G Phelps; Gemma Carvill; Akash Kumar; Choli Lee; Katy Ankenman; Jeff Munson; Joseph B Hiatt; Emily H Turner; Roie Levy; Diana R O'Day; Niklas Krumm; Bradley P Coe; Beth K Martin; Elhanan Borenstein; Deborah A Nickerson; Heather C Mefford; Dan Doherty; Joshua M Akey; Raphael Bernier; Evan E Eichler; Jay Shendure
Journal:  Science       Date:  2012-11-15       Impact factor: 47.728

7.  Age-dependent brain gene expression and copy number anomalies in autism suggest distinct pathological processes at young versus mature ages.

Authors:  Maggie L Chow; Tiziano Pramparo; Mary E Winn; Cynthia Carter Barnes; Hai-Ri Li; Lauren Weiss; Jian-Bing Fan; Sarah Murray; Craig April; Haim Belinson; Xiang-Dong Fu; Anthony Wynshaw-Boris; Nicholas J Schork; Eric Courchesne
Journal:  PLoS Genet       Date:  2012-03-22       Impact factor: 5.917

8.  Convergence of genes and cellular pathways dysregulated in autism spectrum disorders.

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9.  Integrated systems analysis reveals a molecular network underlying autism spectrum disorders.

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Journal:  Mol Syst Biol       Date:  2014-12-30       Impact factor: 11.429

Review 10.  Assessing the utility of intermediate phenotypes for genetic mapping of psychiatric disease.

Authors:  Jonathan Flint; Nicholas Timpson; Marcus Munafò
Journal:  Trends Neurosci       Date:  2014-09-09       Impact factor: 13.837

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Journal:  J Alzheimers Dis       Date:  2016-10-18       Impact factor: 4.472

Review 2.  Towards a Multivariate Biomarker-Based Diagnosis of Autism Spectrum Disorder: Review and Discussion of Recent Advancements.

Authors:  Troy Vargason; Genevieve Grivas; Kathryn L Hollowood-Jones; Juergen Hahn
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3.  Genetic diagnosis of Mendelian disorders via RNA sequencing.

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Journal:  Nat Commun       Date:  2017-06-12       Impact factor: 14.919

4.  AEGS: identifying aberrantly expressed gene sets for differential variability analysis.

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5.  Commonality in dysregulated expression of gene sets in cortical brains of individuals with autism, schizophrenia, and bipolar disorder.

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7.  Genome-wide, integrative analysis of circular RNA dysregulation and the corresponding circular RNA-microRNA-mRNA regulatory axes in autism.

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8.  MicroRNA-mRNA Co-sequencing Identifies Transcriptional and Post-transcriptional Regulatory Networks Underlying Muscle Wasting in Cancer Cachexia.

Authors:  Geysson Javier Fernandez; Juarez Henrique Ferreira; Ivan José Vechetti; Leonardo Nazario de Moraes; Sarah Santiloni Cury; Paula Paccielli Freire; Jayson Gutiérrez; Renato Ferretti; Maeli Dal-Pai-Silva; Silvia Regina Rogatto; Robson Francisco Carvalho
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9.  Biomarkers for Autism Spectrum Disorders (ASD): A Meta-analysis.

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10.  Overdispersed gene expression in schizophrenia.

Authors:  Guangzao Huang; Daniel Osorio; Jinting Guan; Guoli Ji; James J Cai
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