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A screening analysis of the GJB2 c.176 del 16 mutation responsible for hereditary deafness in a Chinese family 被引量:2

A screening analysis of the GJB2 c.176 del 16 mutation responsible for hereditary deafness in a Chinese family
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摘要 Objective:To determine whether a new-born child from a family carrying a deafness gene needs cochlear implantation to avoid dysphonia by screening and sequencing a deafness-related gene.Results:Both screening and sequencing results confirmed that the new born child had a normal GJB2 gene despite the fact that she has a brother suffering from hearing loss triggered by an allelic GJB2 c.176 del 16 mutation.We cloned the GJB2 genes derived from their respective blood genomic DNA into GFP fused plasmids and transfected those plasmids into the 293 T cell line to test for gene function.While the mutated GJB2gene(GJB2 c.176 del 16) of her deaf brother was found to be unable to form the gap junction structure between two adjacent cells,the baby girl’s GJB2 gene ran into no such problems.Conclusion:The screening and sequencing as well as the GJB2 gene function tests invariably showed results consistent with the ABR tested hearing phenotype,which means that the child,with a normal wild type GJB2 gene,does not need early intervention to prevent her from developing hearing loss and dysphonia at a later stage in life. Objective:To determine whether a new-born child from a family carrying a deafness gene needs cochlear implantation to avoid dysphonia by screening and sequencing a deafness-related gene.Results:Both screening and sequencing results confirmed that the new born child had a normal GJB2 gene despite the fact that she has a brother suffering from hearing loss triggered by an allelic GJB2 c.176 del 16 mutation.We cloned the GJB2 genes derived from their respective blood genomic DNA into GFP fused plasmids and transfected those plasmids into the 293 T cell line to test for gene function.While the mutated GJB2gene(GJB2 c.176 del 16) of her deaf brother was found to be unable to form the gap junction structure between two adjacent cells,the baby girl's GJB2 gene ran into no such problems.Conclusion:The screening and sequencing as well as the GJB2 gene function tests invariably showed results consistent with the ABR tested hearing phenotype,which means that the child,with a normal wild type GJB2 gene,does not need early intervention to prevent her from developing hearing loss and dysphonia at a later stage in life.
出处 《Journal of Otology》 CSCD 2016年第3期134-137,共4页 中华耳科学杂志(英文版)
基金 supported by grants from National Natural Science Foundation of China (81470684) Clinical Special Fund of Jiangsu Province (b12014032) Postdoctoral Science Foundation of China (2015M571818) Six Major Categories Talent (2014-WSN-043,2011-WS-074) Innovation and Entrepreneurship Training Program for College Students in Jiangsu Province (201510313003Z,201510313003,KYLX14-1455) Clinic Medical Special Foundation of Jiangsu Province (b12014032) Project of natural science research area of Jiangsu Province (16KJB320016)
关键词 Deafness gene screening GJB2 Gap junction Deafness gene screening GJB2 Gap junction
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