Swagemakers Sigrid M A, Jaspers Nicolaas G J, Raams Anja, Heijsman Daphne, Vermeulen Wim, Troelstra Christine, Kremer Andreas, Lincoln Stephen E, Tearle Rick, Hoeijmakers Jan H J, van der Spek Peter J
Department of Bioinformatics, Erasmus University Medical Center, P.O. Box 2040, 3000 CA Rotterdam, The Netherlands.
Department of Genetics, Erasmus University Medical Center, P.O. Box 2040, 3000 CA Rotterdam, The Netherlands.
Meta Gene. 2014 Aug 30;2:616-8. doi: 10.1016/j.mgene.2014.08.001. eCollection 2014 Dec.
Complete human genome sequencing was used to identify the causative mutation in a family with Pollitt syndrome (MIM #275550), comprising two non-consanguineous parents and their two affected children. The patient's symptoms were reminiscent of the non-photosensitive form of recessively inherited trichothiodystrophy (TTD). A mutation in the TTDN1/C7orf11 gene, a gene that is known to be involved in non-photosensitive TTD, had been excluded by others by Sanger sequencing. Unexpectedly, we did find a homozygous single-base pair deletion in the coding region of this gene, a mutation that is known to cause non-photosensitive TTD. The deleterious variant causing a frame shift at amino acid 93 (C326delA) followed the right mode of inheritance in the family and was independently validated using conventional DNA sequencing. We expect this novel DNA sequencing technology to help redefine phenotypic and genomic variation in patients with (mono) genetic disorders in an unprecedented manner.
对一个患有波利特综合征(MIM #275550)的家庭进行了全人类基因组测序,该家庭由两个非近亲结婚的父母及其两个患病子女组成。患者的症状让人联想到隐性遗传的毛发硫营养不良(TTD)的非光敏型。其他人通过桑格测序排除了已知与非光敏性TTD相关的TTDN1/C7orf11基因中的一个突变。出乎意料的是,我们确实在该基因的编码区发现了一个纯合的单碱基对缺失,已知该突变会导致非光敏性TTD。导致第93位氨基酸移码的有害变异(C326delA)在该家庭中遵循正确的遗传模式,并通过传统DNA测序得到独立验证。我们期望这种新型DNA测序技术以前所未有的方式帮助重新定义(单)基因疾病患者的表型和基因组变异。