无义突变
遗传学
多指
巴德-比德尔综合征
胡说
错义突变
移码突变
复合杂合度
生物
外显子组测序
血缘关系
基因
等位基因
突变
表型
作者
Hamed Nawaz,Mujahid,Sher Alam Khan,Farhana Bibi,Ahmed Waqas,Abdul Aziz Bari,Fardous,Niamatullah Khan,Nazif Muhammad,Amjad Khan,Sohail Aziz Paracha,Qamre Alam,Mohammad Azhar Kamal,Misbahuddin M. Rafeeq,Noor Muhammad,Fayaz Ul Haq,Shazia Khan,Arif Mahmood,Saadullah Khan,Muhammad Umair
出处
期刊:Genes
[Multidisciplinary Digital Publishing Institute]
日期:2023-05-19
卷期号:14 (5): 1113-1113
被引量:9
标识
DOI:10.3390/genes14051113
摘要
Bardet-Biedl syndrome (BBS) is a rare clinically and genetically heterogeneous autosomal recessive multi-systemic disorder with 22 known genes. The primary clinical and diagnostic features include six different hallmarks, such as rod-cone dystrophy, learning difficulties, renal abnormalities, male hypogonadism, post-axial polydactyly, and obesity. Here, we report nine consanguineous families and a non-consanguineous family with several affected individuals presenting typical clinical features of BBS. In the present study, 10 BBS Pakistani families were subjected to whole exome sequencing (WES), which revealed novel/recurrent gene variants, including a homozygous nonsense mutation (c.94C>T; p.Gln32Ter) in the IFT27 (NM_006860.5) gene in family A, a homozygous nonsense mutation (c.160A>T; p.Lys54Ter) in the BBIP1 (NM_001195306.1) gene in family B, a homozygous nonsense variant (c.720C>A; p.Cys240Ter) in the WDPCP (NM_015910.7) in family C, a homozygous nonsense variant (c.505A>T; p.Lys169Ter) in the LZTFL1 (NM_020347.4) in family D, pathogenic homozygous 1 bp deletion (c.775delA; p.Thr259Leufs*21) in the MKKS/BBS5 (NM_170784.3) gene in family E, a pathogenic homozygous missense variant (c.1339G>A; p.Ala447Thr) in BBS1 (NM_024649.4) in families F and G, a pathogenic homozygous donor splice site variant (c.951+1G>A; p?) in BBS1 (NM_024649.4) in family H, a pathogenic bi-allelic nonsense variant in MKKS (NM_170784.3) (c.119C>G; p.Ser40*) in family I, and homozygous pathogenic frameshift variants (c.196delA; p.Arg66Glufs*12) in BBS5 (NM_152384.3) in family J. Our findings extend the mutation and phenotypic spectrum of four different types of ciliopathies causing BBS and also support the importance of these genes in the development of multi-systemic human genetic disorders.
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