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首页> 外文期刊>Twin research and human genetics : >Four-Generation Pedigree of Monozygotic Female Twins Reveals Genetic Factors in Twinning Process by Whole-Genome Sequencing
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Four-Generation Pedigree of Monozygotic Female Twins Reveals Genetic Factors in Twinning Process by Whole-Genome Sequencing

机译:单义术女性双胞胎的四代谱系揭示了全基因组测序的孪生过程中的遗传因素

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摘要

Familial monozygotic (MZ) twinning reports are rare around the world, and we report a four-generation pedigree with seven recorded pairs of female MZ twins. Whole-genome sequencing of seven family members was performed to explore the featured genetic factors in MZ twins. For variations specific to MZ twins, five novel variants were observed in the X chromosome. These candidates were used to explain the seemingly X-linked dominant inheritance pattern, and only one variant was exonic, located at the 5′UTR region of ZCCHC12 (chrX: 117958597, G > A). Besides, consistent mitochondrial DNA composition in the maternal linage precluded roles of mitochondria for this trait. In this pedigree, autosomes also contain diverse variations specific to MZ twins. Pathway analysis revealed a significant enrichment of genes carrying novel SNVs in the epithelial adherens junction-signaling pathway (p = .011), contributed by FGFR1, TUBB6, and MYH7B. Meanwhile, TBC1D22A, TRIOBP, and TUBB6, also carrying similar SNVs, were involved in the GTPase family-mediated signal pathway. Furthermore, gene-set enrichment analysis for 533 genes covered by copy number variations specific to MZ twins illustrated that the tight junction-signaling pathway was significantly enriched (p < .001). Therefore, the novel changes in the X chromosome and the provided candidate variants across autosomes may be responsible for MZ twinning, giving clues to increase our understanding about the underlying mechanism.
机译:家庭单一程(MZ)Twinning Reports在世界各地都很罕见,我们向一双历史纪录的女性MZ双胞胎报告了一项四代血统。七位家庭成员的全基因组测序探讨了MZ双胞胎的特色遗传因素。对于特异于MZ双胞胎的变化,在X染色体中观察到五种新变种。这些候选者用于解释看似X链接的显性遗传模式,并且仅在ZCCHC12(CHRX:117958597,G> A)的5'UTR区位于ZCCHC12的5'UTR区域。此外,母体衬里中的一致性线粒体DNA组合物在母体载体中的作用排除了线粒体的作用。在该血统中,常染色体还包含特异于MZ双胞胎的各种变化。途径分析显示,在上皮粘附结信号通路(P = .011)中携带新型SNV的基因的显着富集,由FGFR1,TUBB6和MYH7B贡献。同时,TBC1D22A,TRIOBP和TUBB6也携带类似的SNV,参与GTP酶家庭介导的信号途径。此外,通过特异于MZ双胞胎的拷贝数变化覆盖的533个基因的基因设定富集分析表明,紧密结合信号通路显着富集(P <.001)。因此,X染色体的新改变和对自动染色体的提供的候选变体可能是MZ Twinning的负责,以增加我们对潜在机制的理解。

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