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首页> 外文期刊>Journal of human genetics >Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
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Copy-number variants and candidate gene mutations in isolated split hand/foot malformation

机译:分离的分裂手/足畸形中的拷贝数变体和候选基因突变

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摘要

Split hand/foot malformation (SHFM) is a congenital limb deficiency with missing or shortened central digits. Some SHFM genes have been identified but the cause of many SHFM cases is unknown. We used single-nucleotide polymorphism (SNP) microarray analysis to detect copy-number variants (CNVs) in 25 SHFM cases without other birth defects from New York State (NYS), prioritized CNVs absent from population CNV databases, and validated these CNVs using quantitative real-time polymerase chain reaction (qPCR). We tested for the validated CNVs in seven cases from Iowa using qPCR, and also sequenced 36 SHFM candidate genes in all the subjects. Seven NYS cases had a potentially deleterious variant: two had a p.R225H or p.R225L mutation in TP63, one had a 17q25 microdeletion, one had a 10q24 microduplication and three had a 17p13.3 microduplication. In addition, one Iowa case had a de novo 10q24 microduplication. The 17q25 microdeletion has not been reported previously in SHFM and included two SHFM candidate genes (SUMO2 and GRB2), while the 10q24 and 17p13.3 CNVs had breakpoints within genomic regions that contained putative regulatory elements and a limb development gene. In SHFM pathogenesis, the microdeletion may cause haploinsufficiency of SHFM genes and/or deletion of their regulatory regions, and the microduplications could disrupt regulatory elements that control transcription of limb development genes.
机译:分裂手/脚畸形(SHFM)是一种先天性肢体缺乏,中央数字缺失或缩短。已经确定了一些SHFM基因,但许多SHFM病例的原因是未知的。我们使用单核苷酸多态性(SNP)微阵列分析来检测25例SHFM病例中的拷贝数变体(CNV),没有纽约州(NYS)的其他出生缺陷,优先从人口CNV数据库中缺席的CNV,并使用定量验证了这些CNVS实时聚合酶链反应(QPCR)。我们使用QPCR从IOWA的7例中测试了验证的CNV,并且还在所有受试者中测序了36个SH​​FM候选基因。七个鼻腔有一个潜在有害的变体:两种具有p.R225H或P.R225L突变在TP63中,人有17〜25例微量筛选,一个有10Q24微量杂质,三个具有17p13.3微统计杂腐功能。此外,一位iowa案例有de novo 10q24微杂皮。在SHFM中尚未报道17Q25微筛选,包括两个SHFM候选基因(SUMO2和GRB2),而10Q24和17P13.3 CNV在基因组区域中具有占状调节因子和肢体发育基因的基因组区域断裂点。在SHFM发病机制中,微筛查可能导致SHFM基因的单量水能和/或缺失其调节区域,并且微杂操作可能破坏控制肢体显影基因转录的调节元件。

著录项

  • 来源
    《Journal of human genetics》 |2017年第10期|共8页
  • 作者单位

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Div Intramural Populat Hlth Res NIH 6710B Bldg;

    New York State Dept Hlth Wadsworth Ctr Albany NY USA;

    New York State Dept Hlth Wadsworth Ctr Albany NY USA;

    New York State Dept Hlth Congenital Malformat Reg Empire State Plaza Corning Tower Albany NY USA;

    Univ Iowa Coll Publ Hlth Dept Epidemiol Iowa City IA USA;

    New York State Dept Hlth Wadsworth Ctr Albany NY USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Div Intramural Populat Hlth Res NIH 6710B Bldg;

    Georgetown Univ Med Ctr Dept Biostat Bioinformat &

    Biomath 4000 Reservoir Rd NW Washington DC;

    New York State Dept Hlth Congenital Malformat Reg Empire State Plaza Corning Tower Albany NY USA;

    New York State Dept Hlth Wadsworth Ctr Albany NY USA;

    NHGRI Genome Technol Branch NIH Bethesda MD 20892 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Div Intramural Populat Hlth Res NIH 6710B Bldg;

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

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