肢体异常的分子景观:诊断产量和新候选基因
Akram Mokhtari1, Jade Charbonneau1, Valancy Miranda1
1Division of Medical Genetics, Department of Pediatrics, CHU Sainte-Justine, Montreal, Quebec, Canada.
Clinical genetics
|August 22, 2025
概括
在36%的患者中,基因检测诊断出先天性肢体异常的原因. 外体测序发现了新的突变和候选基因,改善了罕见四肢形的病因诊断.
科学领域:
- 医学遗传学
- 发育生物学
- 人类遗传学
背景情况:
- 原生肢体异常通常缺乏明确的遗传原因,影响诊断和治疗.
- 许多肢体形患者仍未被诊断出来,强调需要进行先进的遗传研究.
研究的目的:
- 报告一大批先天性肢体异常患者的遗传诊断结果.
- 识别新的遗传原因并扩展已知的肢体缺陷基因的表型描述.
主要方法:
- 进行基因检测的132名肢体异常患者的回顾性分析 (2014-2024年).
- 使用染色体微阵列 (CMA),基因面板和整个外体序列 (WES).
- 整合了WES数据与文献和小鼠模型研究,以确定候选位点.
主要成果:
- 在整个队列中实现了36%的平均分子诊断产量.
- 鉴定出多肢 (24%) 和半径异常 (19%) 是常见的情况;50% 呈现出综合征特征.
- 外基因测序诊断了25%的病例,揭示了BMP4和HNRNPH2的25种新突变和扩展表型.
- 发现两种与四肢异常相关的新候选位点 (HOXA11和2q31.1删除).
结论:
- 对于诊断复杂的肢体异常和识别新的遗传病因至关重要.
- 这项研究为了解肢体形的遗传基础做出了重大贡献,并确定了潜在的新候选基因.
- 这些发现为先天肢体异常提供了更好的诊断能力,并强调了将人类遗传数据与动物模型研究相结合的价值.
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