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全面基因组过滤算法揭示 X 染色体失活偏倚的原因。在女性血友病表达中的概念验证。

Comprehensive genomic filtering algorithm to expose the cause of skewed X chromosome inactivation. The proof of concept in female haemophilia expression.

机构信息

Laboratorio de Genética Molecular de la Hemofilia, Instituto de Medicina Experimental, CONICET-Academia Nacional de Medicina, Buenos Aires, Argentina.

Unidad de Bioinformática, Instituto de Medicina Experimental, CONICET-Academia Nacional de Medicina, Buenos Aires, Argentina.

出版信息

J Med Genet. 2024 Jul 19;61(8):769-776. doi: 10.1136/jmg-2024-109902.

Abstract

BACKGROUND

Exploring the expression of X linked disorders like haemophilia A (HA) in females involves understanding the balance achieved through X chromosome inactivation (XCI). Skewed XCI (SXCI) may be involved in symptomatic HA carriers. We aimed to develop an approach for dissecting the specific cause of SXCI and verify its value in HA.

METHODS

A family involving three females (two symptomatic with severe/moderate HA: I.2, the mother, and II.1, the daughter; one asymptomatic: II.2) and two related affected males (I.1, the father and I.3, the maternal uncle) was studied. The genetic analysis included mutational screening, multiplex ligation-dependent probe amplification, SNP microarray, whole exome sequencing (WES) and Sanger sequencing. XCI patterns were assessed in ectoderm/endoderm and mesoderm-derived tissues using -based and -based systems.

RESULTS

The comprehensive family analysis identifies I.2 female patient as a heterozygous carrier of :p.(Ser1414Ter) excluding copy number variations. A consistent XCI pattern of 99.5% across various tissues was observed. A comprehensive filtering algorithm for WES data was designed, developed and applied to I.2. A Gly58Arg missense variant in was revealed as the cause for SXCI.Each step of the variant filtering system takes advantage of publicly available genomic databases, non-SXCI controls and case-specific molecular data, and aligns with established concepts in the theoretical background of SXCI.

CONCLUSION

This study acts as a proof of concept for our genomic filtering algorithm's clinical utility in analysing X linked disorders. Our findings clarify the molecular aspects of SXCI and improve genetic diagnostics and counselling for families with X linked diseases like HA.

摘要

背景

探索 X 连锁疾病(如血友病 A [HA])在女性中的表达,需要了解通过 X 染色体失活(XCI)达到的平衡。偏性 XCI(SXCI)可能与有症状的 HA 携带者有关。我们旨在开发一种方法来剖析 SXCI 的具体原因,并验证其在 HA 中的价值。

方法

研究了一个涉及三个女性(两个有症状的严重/中度 HA:I.2,母亲;II.1,女儿;一个无症状的:II.2)和两个相关受影响男性(I.1,父亲;I.3,姨父)的家庭。遗传分析包括突变筛查、多重连接依赖性探针扩增、SNP 微阵列、外显子组测序(WES)和 Sanger 测序。使用基于和基于的系统评估外胚层/内胚层和中胚层衍生组织中的 XCI 模式。

结果

综合的家族分析确定 I.2 女性患者为:p.(Ser1414Ter)杂合携带者,不包括拷贝数变异。在各种组织中观察到一致的 99.5%的 XCI 模式。设计、开发并应用于 I.2 的 WES 数据综合过滤算法。揭示了中的 Gly58Arg 错义变体是 SXCI 的原因。该变体过滤系统的每个步骤都利用了公共基因组数据库、非 SXCI 对照和病例特异性分子数据,并与 SXCI 的理论背景中的既定概念一致。

结论

本研究证明了我们的基因组过滤算法在分析 X 连锁疾病中的临床实用性。我们的发现阐明了 SXCI 的分子方面,并改善了 HA 等 X 连锁疾病的遗传诊断和咨询。

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