Literature DB >> 22901949

DUF1220-domain copy number implicated in human brain-size pathology and evolution.

Laura J Dumas1, Majesta S O'Bleness, Jonathan M Davis, C Michael Dickens, Nathan Anderson, J G Keeney, Jay Jackson, Megan Sikela, Armin Raznahan, Jay Giedd, Judith Rapoport, Sandesh S C Nagamani, Ayelet Erez, Nicola Brunetti-Pierri, Rachel Sugalski, James R Lupski, Tasha Fingerlin, Sau Wai Cheung, James M Sikela.   

Abstract

DUF1220 domains show the largest human-lineage-specific increase in copy number of any protein-coding region in the human genome and map primarily to 1q21, where deletions and reciprocal duplications have been associated with microcephaly and macrocephaly, respectively. Given these findings and the high correlation between DUF1220 copy number and brain size across primate lineages (R(2) = 0.98; p = 1.8 × 10(-6)), DUF1220 sequences represent plausible candidates for underlying 1q21-associated brain-size pathologies. To investigate this possibility, we used specialized bioinformatics tools developed for scoring highly duplicated DUF1220 sequences to implement targeted 1q21 array comparative genomic hybridization on individuals (n = 42) with 1q21-associated microcephaly and macrocephaly. We show that of all the 1q21 genes examined (n = 53), DUF1220 copy number shows the strongest association with brain size among individuals with 1q21-associated microcephaly, particularly with respect to the three evolutionarily conserved DUF1220 clades CON1(p = 0.0079), CON2 (p = 0.0134), and CON3 (p = 0.0116). Interestingly, all 1q21 DUF1220-encoding genes belonging to the NBPF family show significant correlations with frontal-occipital-circumference Z scores in the deletion group. In a similar survey of a nondisease population, we show that DUF1220 copy number exhibits the strongest correlation with brain gray-matter volume (CON1, p = 0.0246; and CON2, p = 0.0334). Notably, only DUF1220 sequences are consistently significant in both disease and nondisease populations. Taken together, these data strongly implicate the loss of DUF1220 copy number in the etiology of 1q21-associated microcephaly and support the view that DUF1220 domains function as general effectors of evolutionary, pathological, and normal variation in brain size.
Copyright © 2012 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2012        PMID: 22901949      PMCID: PMC3511999          DOI: 10.1016/j.ajhg.2012.07.016

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


  16 in total

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8.  Recurrent reciprocal 1q21.1 deletions and duplications associated with microcephaly or macrocephaly and developmental and behavioral abnormalities.

Authors:  Nicola Brunetti-Pierri; Jonathan S Berg; Fernando Scaglia; John Belmont; Carlos A Bacino; Trilochan Sahoo; Seema R Lalani; Brett Graham; Brendan Lee; Marwan Shinawi; Joseph Shen; Sung-Hae L Kang; Amber Pursley; Timothy Lotze; Gail Kennedy; Susan Lansky-Shafer; Christine Weaver; Elizabeth R Roeder; Theresa A Grebe; Georgianne L Arnold; Terry Hutchison; Tyler Reimschisel; Stephen Amato; Michael T Geragthy; Jeffrey W Innis; Ewa Obersztyn; Beata Nowakowska; Sally S Rosengren; Patricia I Bader; Dorothy K Grange; Sayed Naqvi; Adolfo D Garnica; Saunder M Bernes; Chin-To Fong; Anne Summers; W David Walters; James R Lupski; Pawel Stankiewicz; Sau Wai Cheung; Ankita Patel
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Journal:  N Engl J Med       Date:  2008-09-10       Impact factor: 91.245

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  61 in total

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2.  DUF1220 protein domains drive proliferation in human neural stem cells and are associated with increased cortical volume in anthropoid primates.

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4.  Replicated linear association between DUF1220 copy number and severity of social impairment in autism.

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6.  Evolutionary history and genome organization of DUF1220 protein domains.

Authors:  Majesta S O'Bleness; C Michael Dickens; Laura J Dumas; Hildegard Kehrer-Sawatzki; Gerald J Wyckoff; James M Sikela
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7.  Exome sequencing and arrayCGH detection of gene sequence and copy number variation between ILS and ISS mouse strains.

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Review 8.  Evolution of genetic and genomic features unique to the human lineage.

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