首页> 美国卫生研究院文献>American Journal of Human Genetics >Functional Loss of Semaphorin 3C and/or Semaphorin 3D and Their Epistatic Interaction with Ret Are Critical to Hirschsprung Disease Liability
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Functional Loss of Semaphorin 3C and/or Semaphorin 3D and Their Epistatic Interaction with Ret Are Critical to Hirschsprung Disease Liability

机译:Semaphorin 3C和/或Semaphorin 3D的功能丧失以及它们与Ret的上位相互作用对Hirschsprung疾病的责任至关重要

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摘要

Innervation of the gut is segmentally lost in Hirschsprung disease (HSCR), a consequence of cell-autonomous and non-autonomous defects in enteric neuronal cell differentiation, proliferation, migration, or survival. Rare, high-penetrance coding variants and common, low-penetrance non-coding variants in 13 genes are known to underlie HSCR risk, with the most frequent variants in the ret proto-oncogene (RET). We used a genome-wide association (220 trios) and replication (429 trios) study to reveal a second non-coding variant distal to RET and a non-coding allele on chromosome 7 within the class 3 Semaphorin gene cluster. Analysis in Ret wild-type and Ret-null mice demonstrates specific expression of Sema3a, Sema3c, and Sema3d in the enteric nervous system (ENS). In zebrafish embryos, sema3 knockdowns show reduction of migratory ENS precursors with complete ablation under conjoint ret loss of function. Seven candidate receptors of Sema3 proteins are also expressed within the mouse ENS and their expression is also lost in the ENS of Ret-null embryos. Sequencing of SEMA3A, SEMA3C, and SEMA3D in 254 HSCR-affected subjects followed by in silico protein structure modeling and functional analyses identified five disease-associated alleles with loss-of-function defects in semaphorin dimerization and binding to their cognate neuropilin and plexin receptors. Thus, semaphorin 3C/3D signaling is an evolutionarily conserved regulator of ENS development whose dys-regulation is a cause of enteric aganglionosis.
机译:肠道蠕动在Hirschsprung病(HSCR)中部分丢失,这是肠道神经元细胞分化,增殖,迁移或存活中细胞自主和非自主缺陷的结果。已知13个基因中的罕见高通透性编码变体和常见,低通透性非编码变体是HSCR风险的基础,而视网膜原癌基因(RET)最常见。我们使用了全基因组关联(220个三重奏)和复制(429个三重奏)研究来揭示RET远端的第二个非编码变体和3类信号量基因簇中7号染色体上的非编码等位基因。对Ret野生型和Ret-null小鼠的分析表明,Sema3a,Sema3c和Sema3d在肠道神经系统(ENS)中具有特异性表达。在斑马鱼的胚胎中,sema3基因敲低显示出在联合视网膜功能丧失下完全消融后的ENS前体迁移减少。 Sema3蛋白的七个候选受体也在小鼠ENS中表达,并且它们在Ret-null胚胎的ENS中也失去表达。在254名受HSCR影响的受试者中对SEMA3A,SEMA3C和SEMA3D进行测序,然后进行计算机硅蛋白结构建模和功能分析,确定了5种与疾病相关的等位基因,其信号蛋白二聚化具有功能丧失性缺陷,并与其相关的神经纤毛蛋白和丛蛋白受体结合。因此,semaphorin 3C / 3D信号传导是ENS发育的进化保守调节因子,其失调是肠神经节的病因。

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