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Targeted gene panel provides advantages over whole-exome sequencing for diagnosing obesity and diabetes mellitus
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作者 Hairong Yu Haoyong Yu +7 位作者 Rong Zhang Danfeng Peng Dandan Yan Yunjuan Gu Yuqian Bao Weiping Jia Hong Zhang Cheng Hu 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2023年第6期40-52,共13页
A small fraction of patients diagnosed with obesity or diabetes mellitus has an underlying monogenic cause.Here,we constructed a targeted gene panel consisting of 83 genes reported to be causative for monogenic obesit... A small fraction of patients diagnosed with obesity or diabetes mellitus has an underlying monogenic cause.Here,we constructed a targeted gene panel consisting of 83 genes reported to be causative for monogenic obesity or diabetes.We performed this panel in 481 patients to detect causative variants and compared these results with whole-exome sequencing(WES)data available for 146 of these patients.The coverage of targeted gene panel sequencing was significantly higher than that of WES.The diagnostic yield in patients sequenced by the panel was 32.9%with subsequent WES leading to three additional diagnoses with two novel genes.In total,178 variants in 83 genes were detected in 146 patients by targeted sequencing.Three of the 178 variants were missed by WES,although the WES-only approach had a similar diagnostic yield.For the 335 samples only receiving targeted sequencing,the diagnostic yield was 32.2%.In conclusion,taking into account the lower costs,shorter turnaround time,and higher quality of data,targeted sequencing is a more effective screening method for monogenic obesity and diabetes compared to WES.Therefore,this approach could be routinely established and used as a first-tier test in clinical practice for specific patients. 展开更多
关键词 molecular diagnosis monogenic diabetes mellitus monogenic obesity targeted panel whole-exome sequencing
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基于靶向基因测序的原发性免疫缺陷病基因诊断方法 被引量:2
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作者 杨丽君 李牛 +1 位作者 刘毅 王剑 《上海交通大学学报(医学版)》 CAS CSCD 北大核心 2017年第3期390-393,共4页
目的·设计并建立基于靶向基因测序(TPS)的适合原发性免疫缺陷病(PID)的高通量基因诊断方法。方法·阅读文献并查询相关数据库确定PID的已知致病基因,设计并定制针对这些基因所有外显子及侧翼序列的捕获探针,并通过该方法对1例... 目的·设计并建立基于靶向基因测序(TPS)的适合原发性免疫缺陷病(PID)的高通量基因诊断方法。方法·阅读文献并查询相关数据库确定PID的已知致病基因,设计并定制针对这些基因所有外显子及侧翼序列的捕获探针,并通过该方法对1例疑似PID患儿进行分子诊断。结果·该PID测序panel共包含100个已知致病基因。该疑似PID患儿测序结果共产生读条数16 414 298(reads),平均覆盖深度为157 X,98.35%的目标区域测序深度大于20 X,99.97%的目标区域具有1 X以上的测序深度。最终在患儿的CXCR4基因第2号外显子区域发现一个杂合的无义突变(c.1000C>T,p.Arg334*)。Sanger测序结果验证了患儿CXCR4基因的变异并表明其父母在相应位点均为野生型,证实了患儿CXCR4基因的变异为新生突变(de novo)。结论·建立了PID高通量基因诊断方法,并借助该靶向基因测序技术成功诊断1例WHIM综合征患儿。 展开更多
关键词 原发性免疫缺陷病 靶向基因测序 WHIM综合征 CXCR4基因 新生突变
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