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一种在 NUSAP1 中反复出现的新生缺失变异可逃避无义介导的衰变,并导致小头畸形、癫痫和发育迟缓。

A recurrent de novo variant in NUSAP1 escapes nonsense-mediated decay and leads to microcephaly, epilepsy, and developmental delay.

机构信息

Department of Neurology, Boston Children's Hospital, Harvard Medical School, Boston, Massachusetts, USA.

Department of Genetics, Hadassah Medical Center, Jerusalem, Israel.

出版信息

Clin Genet. 2023 Jul;104(1):73-80. doi: 10.1111/cge.14335. Epub 2023 Apr 2.

Abstract

NUSAP1 encodes a cell cycle-dependent protein with key roles in mitotic progression, spindle formation, and microtubule stability. Both over- and under-expression of NUSAP1 lead to dysregulation of mitosis and impaired cell proliferation. Through exome sequencing and Matchmaker Exchange, we identified two unrelated individuals with the same recurrent, de novo heterozygous variant (NM_016359.5 c.1209C > A; p.(Tyr403Ter)) in NUSAP1. Both individuals had microcephaly, severe developmental delay, brain abnormalities, and seizures. The gene is predicted to be tolerant of heterozygous loss-of-function mutations, and we show that the mutant transcript escapes nonsense mediated decay, suggesting that the mechanism is likely dominant-negative or toxic gain of function. Single-cell RNA-sequencing of an affected individual's post-mortem brain tissue indicated that the NUSAP1 mutant brain contains all main cell lineages, and that the microcephaly could not be attributed to loss of a specific cell type. We hypothesize that pathogenic variants in NUSAP1 lead to microcephaly possibly by an underlying defect in neural progenitor cells.

摘要

NUSAP1 编码一种细胞周期依赖性蛋白,在有丝分裂进展、纺锤体形成和微管稳定性方面发挥关键作用。NUSAP1 的过表达和低表达都会导致有丝分裂失调和细胞增殖受损。通过外显子组测序和匹配交换,我们在两名无亲缘关系的个体中发现了相同的复发性、新生杂合变异(NM_016359.5 c.1209C>T;p.(Tyr403Ter))。这两名个体均有小头畸形、严重的发育迟缓、脑异常和癫痫。该基因被预测能耐受杂合失活突变,我们发现突变转录本逃避无义介导的衰变,表明该机制可能是显性负或毒性获得功能。受影响个体的死后脑组织的单细胞 RNA 测序表明,NUSAP1 突变脑包含所有主要的细胞谱系,且小头畸形不能归因于特定细胞类型的缺失。我们假设 NUSAP1 中的致病变异可能通过神经祖细胞的潜在缺陷导致小头畸形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14cc/10236379/468e7f9637d7/CGE-104-73-g003.jpg

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