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Genetics of hearing loss in the Arab population of Northern Israel.

机译:以色列北部阿拉伯人口遗传损失的遗传学。

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摘要

For multiple generations, much of the Arab population of Northern Israel has lived in communities with consanguineous marriages and large families. These communities have been particularly cooperative and informative for understanding the genetics of recessive traits. We studied the genetics of hearing loss in this population, evaluating 168 families from 46 different villages. All families were screened for founder variants by Sanger sequencing and 13 families were further evaluated by sequencing all known genes for hearing loss using our targeted gene panel HEar-Seq. Deafness in 34 of 168 families (20%) was explained by founder variants in GJB2, SLC26A4, or OTOF. In 6 of 13 families (46%) evaluated using HEar-Seq, deafness was explained by damaging alleles of SLC26A4, MYO15A, OTOG, LOXHD1, and TBC1D24. In some genes critical to hearing, it is particularly difficult to interpret variants that might affect splicing, because the genes are not expressed in accessible tissue. To address this problem for possible splice-altering variants of MYO15A, we evaluated minigenes transfected into HEK293 cells. Results revealed exon skipping in the message of MYO15A c.9083+6T>A, and intron retention in the message of MYO15A c.8340G>A, in each case leading to a premature stop and consistent with co-segregation of homozygosity for each variant with hearing loss. The profile of genetics of hearing loss in this population reflects the genetic heterogeneity of hearing loss and the usefulness of synthetic technologies to evaluate potentially causal variants in genes not expressed in accessible tissues.
机译:对于多个世代而言,以色列北部的大部分阿拉伯人口居住在与近亲婚姻和大家庭的社区。这些社区对理解隐性特征的遗传学尤为合作和信息。我们研究了这群人口中听力损失的遗传学,评估了来自46个不同村庄的168个家庭。所有家庭被筛选的创始型变体筛选,通过Sanger测序,通过使用我们靶向基因小组听到SEQ测序所有已知基因进行所有已知的基因进一步评估13个家族。 168个家族中的34个(20%)中的耳聋是由GJB2,SLC26A4或OTOF中的创始型变体解释的。在使用听力SEQ评估的13个系列(46%)中,通过损坏SLC26A4,MYO15A,OTOG,LOXHD1和TBC1D24的等位基因来解释耳聋。在对听力至关重要的一些基因中,特别难以解释可能影响剪接的变体,因为该基因未在可访问组织中表达。为了解决MyO15a可能的接头改变变体的这个问题,我们评估转染到HEK293细胞中的小核。结果显示,在Myo15A C.9083 + 6T> A的信息中跳过外显子,在Myo15A C.8340G> A的信息中,在每种情况下导致过早停止,并与每个变体的纯合子的共同分配一致随着听力损失。该人群听力损失的遗传学概况反映了听力损失的遗传异质性以及合成技术在无障碍组织中不表达的基因中评估潜在的因果变体的遗传异质性。

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    Genetics Institute Emek Medical Center Afula Israel;

    Department of Human Molecular Genetics and Biochemistry Sackler Faculty of Medicine and Sagol;

    Department of Medicine Division of Medical Genetics University of Washington Seattle WA USA;

    Department of Human Molecular Genetics and Biochemistry Sackler Faculty of Medicine and Sagol;

    Genetics Institute Emek Medical Center Afula Israel;

    Genetics Institute Emek Medical Center Afula Israel;

    Genetics Institute Emek Medical Center Afula Israel;

    Genetics Institute Emek Medical Center Afula Israel;

    Department of Medicine Division of Medical Genetics University of Washington Seattle WA USA;

    Department of Human Molecular Genetics and Biochemistry Sackler Faculty of Medicine and Sagol;

    Department of Medicine Division of Medical Genetics University of Washington Seattle WA USA;

    Department of Human Molecular Genetics and Biochemistry Sackler Faculty of Medicine and Sagol;

    Genetics Institute Emek Medical Center Afula Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
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