Association between rare variants in specific functional pathways and human neural tube defects multiple subphenotypes.

IF 4 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Jizhen Zou, Fang Wang, Xueyan Yang, Hongyan Wang, Lee Niswander, Ting Zhang, Huili Li
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引用次数: 13

Abstract

Background: Neural tube defects (NTDs) are failure of neural tube closure, which includes multiple central nervous system phenotypes. More than 300 mouse mutant strains exhibits NTDs phenotypes and give us some clues to establish association between biological functions and subphenotypes. However, the knowledge about association in human remains still very poor.

Methods: High throughput targeted genome DNA sequencing were performed on 280 neural tube closure-related genes in 355 NTDs cases and 225 ethnicity matched controls, RESULTS: We explored that potential damaging rare variants in genes functioning in chromatin modification, apoptosis, retinoid metabolism and lipid metabolism are associated with human NTDs. Importantly, our data indicate that except for planar cell polarity pathway, craniorachischisis is also genetically related with chromatin modification and retinoid metabolism. Furthermore, single phenotype in cranial or spinal regions displays significant association with specific biological function, such as anencephaly is associated with potentially damaging rare variants in genes functioning in chromatin modification, encephalocele is associated with apoptosis, retinoid metabolism and one carbon metabolism, spina bifida aperta and spina bifida cystica are associated with apoptosis; lumbar sacral spina bifida aperta and spina bifida occulta are associated with lipid metabolism. By contrast, complex phenotypes in both cranial and spinal regions display association with various biological functions given the different phenotypes.

Conclusions: Our study links genetic variant to subphenotypes of human NTDs and provides a preliminary but direct clue to investigate pathogenic mechanism for human NTDs.

Abstract Image

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特定功能通路的罕见变异与人类神经管缺陷多亚表型之间的关联。
背景:神经管缺陷(NTDs)是神经管闭合失败,包括多种中枢神经系统表型。300多个小鼠突变株显示出NTDs表型,为建立生物学功能与亚表型之间的联系提供了一些线索。然而,人类对联想的认识仍然非常贫乏。方法:对355例NTDs病例和225例种族匹配对照的280个神经管关闭相关基因进行高通量靶向基因组DNA测序。结果:我们探索了染色质修饰、细胞凋亡、类视黄酸代谢和脂质代谢等功能基因的潜在破坏性罕见变异与人类NTDs相关。重要的是,我们的数据表明,除了平面细胞极性途径外,颅裂还与染色质修饰和类视黄醇代谢有关。此外,颅或脊柱区域的单一表型与特定的生物学功能显示出显著的相关性,例如无脑儿与染色质修饰基因中潜在的破坏性罕见变异有关,脑膨出与细胞凋亡、类视黄醇代谢和一碳代谢有关,腹裂和囊性脊柱裂与细胞凋亡有关;腰椎骶部腹裂和隐性脊柱裂与脂质代谢有关。相比之下,颅和脊柱区域的复杂表型显示出与不同表型的各种生物学功能的关联。结论:本研究将遗传变异与人类热带病的亚表型联系起来,为探讨人类热带病的发病机制提供了初步而直接的线索。
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来源期刊
Neural Development
Neural Development 生物-发育生物学
CiteScore
6.60
自引率
0.00%
发文量
11
审稿时长
>12 weeks
期刊介绍: Neural Development is a peer-reviewed open access, online journal, which features studies that use molecular, cellular, physiological or behavioral methods to provide novel insights into the mechanisms that underlie the formation of the nervous system. Neural Development aims to discover how the nervous system arises and acquires the abilities to sense the world and control adaptive motor output. The field includes analysis of how progenitor cells form a nervous system during embryogenesis, and how the initially formed neural circuits are shaped by experience during early postnatal life. Some studies use well-established, genetically accessible model systems, but valuable insights are also obtained from less traditional models that provide behavioral or evolutionary insights.
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