Whole-genome sequencing of multiple related individuals with type 2 diabetes reveals an atypical likely pathogenic mutation in the PAX6 gene

被引:0
|
作者
Bernhard O. Boehm
Wolfgang Kratzer
Vikas Bansal
机构
[1] Nanyang Technological University Singapore,Lee Kong Chian School of Medicine
[2] Ulm University Medical Centre,Department of Internal Medicine I
[3] University of California San Diego,Department of Pediatrics
来源
European Journal of Human Genetics | 2023年 / 31卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Pathogenic variants in more than 14 genes have been implicated in monogenic diabetes; however, a significant fraction of individuals with young-onset diabetes and a strong family history of diabetes have unknown genetic etiology. To identify novel pathogenic alleles for monogenic diabetes, we performed whole-genome sequencing (WGS) on four related individuals with type 2 diabetes – including one individual diagnosed at the age of 31 years – that were negative for mutations in known monogenic diabetes genes. The individuals were ascertained from a large case-control study and had a multi-generation family history of diabetes. Identity-by-descent (IBD) analysis revealed that the four individuals represent two sib-pairs that are third-degree relatives. A novel missense mutation (p.P81S) in the PAX6 gene was one of eight rare coding variants across the genome shared IBD by all individuals and was inherited from affected mothers in both sib-pairs. The mutation affects a highly conserved amino acid located in the paired-domain of PAX6 - a hotspot for missense mutations that cause aniridia and other eye abnormalities. However, no eye-related phenotype was observed in any individual. The well-established functional role of PAX6 in glucose-induced insulin secretion and the co-segregation of diabetes in families with aniridia provide compelling support for the pathogenicity of this mutation for diabetes. The mutation could be classified as “likely pathogenic” with a posterior probability of 0.975 according to the ACMG/AMP guidelines. This is the first PAX6 missense mutation that is likely pathogenic for autosomal-dominant adult-onset diabetes without eye abnormalities.
引用
收藏
页码:89 / 96
页数:7
相关论文
共 41 条
  • [21] Whole-genome sequencing study to identify candidate markers indicating susceptibility to type 2 diabetes in Bama miniature pigs
    Niu, Miaomiao
    Zhao, Yuqiong
    Jia, Yunxiao
    Xiang, Lei
    Dai, Xin
    Chen, Hua
    ANIMAL MODELS AND EXPERIMENTAL MEDICINE, 2023, 6 (04) : 283 - 293
  • [22] Whole-Genome Sequencing Reveals a Novel Pathogenic GRIN2B Variant in a Patient with Neurodevelopmental Disorder and an inv(6)(p24p11.2)pat
    Cordova-Fletes, Carlos
    Rivera, Horacio
    Guadalupe Dominguez-Quezada, Ma.
    Alejandra Aguayo-Orozco, Thania
    Garza-Gonzalez, Elvira
    Nunez-Garcia, Luis A.
    Miguel Mercado-Silvae, Francisco
    Alejandra Rosales-Reynoso, Monica
    Barros-Nunez, Patricio
    CYTOGENETIC AND GENOME RESEARCH, 2024, 164 (02) : 92 - 102
  • [23] Whole-genome sequencing reveals a recurrent missense mutation in the Connexin 46 (GJA3) gene causing autosomal-dominant lamellar cataract
    Berry, Vanita
    Ionides, Alexander C. W.
    Pontikos, Nikolas
    Moghul, Ismail
    Moore, Anthony T.
    Cheetham, Michael E.
    Michaelides, Michel
    EYE, 2018, 32 (10) : 1661 - 1668
  • [24] Whole-genome sequencing reveals a recurrent missense mutation in the Connexin 46 (GJA3) gene causing autosomal-dominant lamellar cataract
    Vanita Berry
    Alexander C. W. Ionides
    Nikolas Pontikos
    Ismail Moghul
    Anthony T. Moore
    Michael E. Cheetham
    Michel Michaelides
    Eye, 2018, 32 : 1661 - 1668
  • [25] Bioinformatic analysis of whole-genome sequencing detects a rare pathogenic multi-exon deletion in the CACNA1A gene associated with episodic ataxia, type 2
    Shishinyov, Spasimir
    Balabanski, Lubomir
    Atanasoska, Maya
    Staykova, Slavyana
    Todorov, Tihomir
    Todorova, Albena
    Avdjieva-Tzavella, Daniela
    Bradinova, Irena
    Toncheva, Draga
    Vazharova, Radoslava
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2024, 32 : 525 - 526
  • [26] Whole genome sequencing in patients with retinitis pigmentosa reveals pathogenic DNA structural changes and NEK2 as a new disease gene
    Nishiguchi, Koji M.
    Tearle, Richard G.
    Liu, Yangfan P.
    Ohd, Edwin C.
    Miyake, Noriko
    Benaglio, Paola
    Harper, Shyana
    Koskiniemi-Kuendig, Hanna
    Venturini, Giulia
    Sharon, Dror
    Koenekoop, Robert K.
    Nakamura, Makoto
    Kondo, Mineo
    Ueno, Shinji
    Yasuma, Tetsuhiro R.
    Beckmann, Jacques S.
    Ikegawa, Shiro
    Matsumoto, Naomichi
    Terasaki, Hiroko
    Berson, Eliot L.
    Katsanis, Nicholas
    Rivolta, Carlo
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, 110 (40) : 16139 - 16144
  • [27] Whole-exome sequencing in familial type 2 diabetes identifies an atypical missense variant in the RyR2 gene
    Bansal, Vikas
    Winkelmann, Bernhard R.
    Dietrich, Johannes W.
    Boehm, Bernhard O.
    FRONTIERS IN ENDOCRINOLOGY, 2024, 15
  • [28] Low-pass whole-genome sequencing, deep exome sequencing and dense array genotyping for determining genetic variants associated with type 2 diabetes
    Pearson, R. D.
    Kang, H. M.
    Voight, B. F.
    Gaulton, K. J.
    Fuchsberger, C.
    Maguire, J. R.
    DIABETOLOGIA, 2011, 54 : S47 - S47
  • [29] Whole exome sequencing reveals a novel missense mutation in the MARS gene related to a rare Charcot-Marie-Tooth neuropathy type 2U
    Sagi-Dain, L.
    Shemer, L.
    Larom-Kahn, G.
    Harari-Shaham, A.
    Peleg, A.
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2018, 26 : 424 - 425
  • [30] Whole-exome sequencing in a family with multiple cases of early-onset diabetes reveals a candidate causative mutation in the PTF1A gene
    Tanaka, D.
    Okamoto, S.
    Liu, Y.
    Iizuka, K.
    Hamamoto, Y.
    Horikawa, Y.
    Yabe, D.
    Inagaki, N.
    DIABETOLOGIA, 2020, 63 (SUPPL 1) : S150 - S150