Department of Genetics, King Faisal Specialist Hospital and Research Center, Riyadh, Saudi Arabia.
Department of Pediatrics, Al-Jahra Hospital, Kuwait City, Kuwait.
Hum Genet. 2019 Mar;138(3):221-229. doi: 10.1007/s00439-019-01979-w. Epub 2019 Feb 13.
Nuclear pore complex (NPC) is a fundamental component of the nuclear envelope and is key to the nucleocytoplasmic transport. Mutations in several NUP genes that encode individual components of NPC known as nucleoporins have been identified in recent years among patients with static encephalopathies characterized by developmental delay and microcephaly. We describe a multiplex consanguineous family in which four affected members presented with severe neonatal hypotonia, profound global developmental delay, progressive microcephaly and early death. Autozygome and linkage analysis revealed that this phenotype is linked to a founder disease haplotype (chr9:127,113,732-135,288,807) in which whole exome sequencing revealed the presence of a novel homozygous missense variant in NUP214. Functional analysis of patient-derived fibroblasts recapitulated the dysmorphic phenotype of nuclei that was previously described in NUP214 knockdown cells. In addition, the typical rim staining of NUP214 is largely displaced, further supporting the deleterious effect of the variant. Our data expand the list of NUP genes that are mutated in encephalopathy disorders in humans.
核孔复合体(NPC)是核膜的基本组成部分,是核质转运的关键。近年来,在以发育迟缓伴小头畸形为特征的静止性脑病患者中,已经发现了几个编码 NPC 中称为核孔蛋白的单个成分的 NUP 基因突变。我们描述了一个多发性近亲家族,其中四个受影响的成员表现为严重的新生儿张力减退、严重的全面发育迟缓、进行性小头畸形和早期死亡。自体基因组分析和连锁分析表明,这种表型与一个创始疾病单倍型(chr9:127,113,732-135,288,807)相关,外显子组测序显示存在一种新的纯合错义变体在 NUP214 中。患者来源的成纤维细胞的功能分析再现了以前在 NUP214 敲低细胞中描述的核畸形表型。此外,NUP214 的典型边缘染色大量移位,进一步支持该变体的有害影响。我们的数据扩展了在人类脑病疾病中突变的 NUP 基因列表。