Literature DB >> 28011674

Rare genetic variants in SMAP1, B3GAT2, and RIMS1 contribute to pediatric venous thromboembolism.

Frank Rühle1, Anika Witten1, Andrei Barysenka1, Andreas Huge1, Astrid Arning1, Christine Heller2, Anne Krümpel3, Rolf Mesters4, Andre Franke5, Wolfgang Lieb6, Mona Riemenschneider1, Milan Hiersche1, Verena Limperger7, Ulrike Nowak-Göttl3,7, Monika Stoll1,8.   

Abstract

Recent genome-wide association studies (GWAS) have confirmed known risk mutations for venous thromboembolism (VTE) and identified a number of novel susceptibility loci in adults. Here we present a GWAS in 212 nuclear families with pediatric VTE followed by targeted next-generation sequencing (NGS) to identify causative mutations contributing to the association. Three single nucleotide polymorphisms (SNPs) exceeded the threshold for genome-wide significance as determined by permutation testing using 100 000 bootstrap permutations (P < 10-5). These SNPs reside in a region on chromosome 6q13 comprising the genes small ARF GAP1 (SMAP1), an ARF6 guanosine triphosphatase-activating protein that functions in clathrin-dependent endocytosis, and β-1,3-glucoronyltransferase 2 (B3GAT2), a member of the human natural killer 1 carbohydrate pathway. Rs1304029 and rs2748331 are associated with pediatric VTE with unpermuted/permuted values of P = 1.42 × 10-6/2.0 × 10-6 and P = 6.11 × 10-6/1.8 × 10-5, respectively. Rs2748331 was replicated (P = .00719) in an independent study sample coming from our GWAS on pediatric thromboembolic stroke (combined P = 7.88 × 10-7). Subsequent targeted NGS in 24 discordant sibling pairs identified 17 nonsynonymous coding variants, of which 1 located in SMAP1 and 3 in RIMS1, a member of the RIM family of active zone proteins, are predicted as damaging by Protein Variation Effect Analyzer and/or sorting intolerant from tolerant scores. Three SNPs curtly missed statistical significance in the transmission-disequilibrium test in the full cohort (rs112439957: P = .08326, SMAP1; rs767118962: P = .08326, RIMS1; and rs41265501: P = .05778, RIMS1). In conjunction, our data provide compelling evidence for SMAP1, B3GAT2, and RIMS1 as novel susceptibility loci for pediatric VTE and warrant future functional studies to unravel the underlying molecular mechanisms leading to VTE.
© 2017 by The American Society of Hematology.

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Year:  2016        PMID: 28011674     DOI: 10.1182/blood-2016-07-728840

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  5 in total

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Authors:  Marion K Mateos; Morten Tulstrup; Michael Cj Quinn; Ruta Tuckuviene; Glenn M Marshall; Ramneek Gupta; Chelsea Mayoh; Benjamin O Wolthers; Pasquale M Barbaro; Ellen Ruud; Rosemary Sutton; Pasi Huttunen; Tamas Revesz; Sonata S Trakymiene; Draga Barbaric; Ulf Tedgård; Jodie E Giles; Frank Alvaro; Olafur G Jonsson; Françoise Mechinaud; Kadri Saks; Daniel Catchpoole; Rishi S Kotecha; Luciano Dalla-Pozza; Georgia Chenevix-Trench; Toby N Trahair; Stuart MacGregor; Kjeld Schmiegelow
Journal:  Cancers (Basel)       Date:  2020-05-19       Impact factor: 6.639

2.  Immunological analysis and differential genes screening of venous thromboembolism.

Authors:  Li-Na Gao; Qiang Li; Jian-Qin Xie; Wan-Xia Yang; Chong-Ge You
Journal:  Hereditas       Date:  2021-01-02       Impact factor: 3.271

3.  Genetic Influence on Frequencies of Myeloid-Derived Cell Subpopulations in Mouse.

Authors:  Imtissal Krayem; Yahya Sohrabi; Eliška Javorková; Valeriya Volkova; Hynek Strnad; Helena Havelková; Jarmila Vojtíšková; Aigerim Aidarova; Vladimír Holáň; Peter Demant; Marie Lipoldová
Journal:  Front Immunol       Date:  2022-01-26       Impact factor: 7.561

4.  Epigenome wide association study of SNP-CpG interactions on changes in triglyceride levels after pharmaceutical intervention: a GAW20 analysis.

Authors:  Jenna Veenstra; Anya Kalsbeek; Karissa Koster; Nathan Ryder; Abbey Bos; Jordan Huisman; Lucas VanderBerg; Jason VanderWoude; Nathan L Tintle
Journal:  BMC Proc       Date:  2018-09-17

5.  Arf GTPase-activating proteins SMAP1 and AGFG2 regulate the size of Weibel-Palade bodies and exocytosis of von Willebrand factor.

Authors:  Asano Watanabe; Hikari Hataida; Naoya Inoue; Kosuke Kamon; Keigo Baba; Kuniaki Sasaki; Rika Kimura; Honoka Sasaki; Yuka Eura; Wei-Fen Ni; Yuji Shibasaki; Satoshi Waguri; Koichi Kokame; Yoko Shiba
Journal:  Biol Open       Date:  2021-09-01       Impact factor: 2.422

  5 in total

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