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Arrayed primer extension technology simplifies mutation detection in Bardet–Biedl and Alström syndrome

机译:阵列引物延伸技术简化了Bardet–Biedl和Alström综合征的突变检测

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摘要

Bardet–Biedl syndrome (BBS; OMIM no. 209 900) and Alström syndrome (ALMS; OMIM no. 203 800) are rare, multisystem genetic disorders showing both a highly variable phenotype and considerable phenotypic overlap; they are included in the emerging group of diseases called ciliopathies. The genetic heterogeneity of BBS with 14 causal genes described to date, serves to further complicate mutational analysis. The development of the BBS–ALMS array which detects known mutations in these genes has allowed us to detect at least one mutation in 40.5% of BBS families and in 26.7% of ALMS families validating this as an efficient and cost-effective first pass screening modality. Furthermore, using this method, we found two BBS families segregating three BBS alleles further supporting oligogenicity or modifier roles for additional mutations. We did not observe more than two mutations in any ALMS family.
机译:Bardet-Biedl综合征(BBS; OMIM编号209-900)和Alström综合征(ALMS; OMIM编号203-800)很少见,多系统遗传病既表现出高度可变的表型,又表现出明显的表型重叠。它们被包括在新兴的称为纤毛病的疾病中。迄今为止,BBS具有14个因果基因的遗传异质性使突变分析更加复杂。检测这些基因中已知突变的BBS-ALMS阵列的开发使我们能够在40.5%的BBS家庭和26.7%的ALMS家庭中检测到至少一个突变,从而验证了该突变是一种有效且经济高效的首过筛查方法。此外,使用这种方法,我们发现两个BBS家族分离了三个BBS等位基因,进一步支持寡核苷酸或其他突变的修饰子作用。在任何ALMS家庭中,我们都没有观察到超过两个突变。

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