| Literature DB >> 25894502 |
Levi B Watkin1, Birthe Jessen2, Wojciech Wiszniewski3, Timothy J Vece4, Max Jan2, Youbao Sha5, Maike Thamsen2, Regie L P Santos-Cortez6, Kwanghyuk Lee6, Tomasz Gambin3, Lisa R Forbes1, Christopher S Law2, Asbjørg Stray-Pedersen7, Mickie H Cheng2, Emily M Mace1, Mark S Anderson2, Dongfang Liu1, Ling Fung Tang8, Sarah K Nicholas1, Karen Nahmod1, George Makedonas1, Debra L Canter1, Pui-Yan Kwok9, John Hicks10, Kirk D Jones11, Samantha Penney3, Shalini N Jhangiani12, Michael D Rosenblum13, Sharon D Dell14, Michael R Waterfield15, Feroz R Papa2, Donna M Muzny12, Noah Zaitlen2, Suzanne M Leal6, Claudia Gonzaga-Jauregui3, Eric Boerwinkle16, N Tony Eissa5, Richard A Gibbs17, James R Lupski18, Jordan S Orange1, Anthony K Shum19.
Abstract
Unbiased genetic studies have uncovered surprising molecular mechanisms in human cellular immunity and autoimmunity. We performed whole-exome sequencing and targeted sequencing in five families with an apparent mendelian syndrome of autoimmunity characterized by high-titer autoantibodies, inflammatory arthritis and interstitial lung disease. We identified four unique deleterious variants in the COPA gene (encoding coatomer subunit α) affecting the same functional domain. Hypothesizing that mutant COPA leads to defective intracellular transport via coat protein complex I (COPI), we show that COPA variants impair binding to proteins targeted for retrograde Golgi-to-ER transport. Additionally, expression of mutant COPA results in ER stress and the upregulation of cytokines priming for a T helper type 17 (TH17) response. Patient-derived CD4(+) T cells also demonstrate significant skewing toward a TH17 phenotype that is implicated in autoimmunity. Our findings uncover an unexpected molecular link between a vesicular transport protein and a syndrome of autoimmunity manifested by lung and joint disease.Entities:
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Year: 2015 PMID: 25894502 PMCID: PMC4513663 DOI: 10.1038/ng.3279
Source DB: PubMed Journal: Nat Genet ISSN: 1061-4036 Impact factor: 38.330