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首页> 外文期刊>Current allergy and asthma reports. >Novel sequencing-based strategies for high-throughput discovery of genetic mutations underlying inherited antibody deficiency disorders.
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Novel sequencing-based strategies for high-throughput discovery of genetic mutations underlying inherited antibody deficiency disorders.

机译:基于新的基于测序的策略可高通量发现遗传性抗体缺乏症背后的基因突变。

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Human inherited antibody deficiency disorders are generally caused by mutations in genes involved in the pathways regulating B-cell class switch recombination; DNA damage repair; and B-cell development, differentiation, and survival. Sequencing a large set of candidate genes involved in these pathways appears to be a highly efficient way to identify novel mutations. Herein we review several high-throughput sequencing approaches as well as recent improvements in target gene enrichment technologies. Systematic improvement of enrichment and sequencing methods, along with refinement of the experimental process is necessary to develop a cost-effective high-throughput resequencing assay for a large cohort of patient samples. The Hyper-IgM/CVID chip is one example of a resequencing platform that may be used to identify known or novel mutations in patents with various types of inherited antibody deficiency.
机译:人类遗传的抗体缺乏症通常是由参与调节B细胞类别开关重组的途径中的基因突变引起的。 DNA损伤修复;和B细胞的发育,分化和存活。对参与这些途径的大量候选基因进行测序似乎是鉴定新突变的一种高效方法。本文中,我们回顾了几种高通量测序方法以及靶基因富集技术的最新改进。富集和测序方法的系统改进以及实验过程的完善,对于开发用于大量患者样品的经济高效的高通量重测序分析是必要的。 Hyper-IgM / CVID芯片是一种重测序平台的示例,可用于识别具有各种类型的遗传性抗体缺陷的专利中的已知或新型突变。

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