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长读长测序改变先天性肾上腺皮质增生症的诊断:解决假基因干扰和结构变异问题。

Long-read sequencing transforms the diagnosis of congenital adrenal hyperplasia: resolving pseudogene interference and structural variations.

作者信息

Zeng Junfeng, Huang Xiaoling, Li Yanwei, Yan Tizhen, Lou Jiwu, Lyu Guizhen, Li Yanjin

机构信息

Newborn Screening Center, Dongguan Maternal and Children Health Hospital, Dongguan, Guangdong, China.

Dongguan Key Laboratory of Screening, Diagnosis and Treatment of Neonatal Genetic and Metabolic Diseases, Dongguan, Guangdong, China.

出版信息

Front Pediatr. 2025 Jun 27;13:1603819. doi: 10.3389/fped.2025.1603819. eCollection 2025.

Abstract

BACKGROUND

Congenital adrenal hyperplasia (CAH) is an autosomal recessive disorder primarily caused by defects in adrenal steroidogenesis. Conventional genetic methods struggle to resolve complex structural variations and pseudogene interference in key genes like . Our study will evaluate the efficacy of Long-Read Sequencing (LRS) as a comprehensive diagnostic tool for CAH, demonstrating its ability to simultaneously detect large structural variations, single nucleotide variants (SNVs), and small insertions or deletions.

METHODS

Four probands with clinically diagnosed CAH underwent detailed biochemical profiling, including serum 17-hydroxyprogesterone, serum sodium and serum potassium. Genomic DNA was extracted from peripheral blood and subjected to LRS using Single-Molecule Real-Time (SMRT) Technologies (Pacifc Biosciences). A targeted panel covering the and genes, as well as other genes related to CAH was captured. Bioinformatic analysis included alignment with Minimap2, variant calling with Sniffles2 and Medaka, and phasing analysis to resolve pseudogene interference.

RESULTS

LRS identified compound heterozygous and homozygous variants in (e.g., c.293-13C > G, c.518T > A, CH-1) and novel compound heterozygous variants in (c.121G > T and c.757T > G). In combination with biochemical tests, clinical manifestations, and the ACMG guidelines, these gene mutations were the cause of the patient's disease. LRS resolved pseudogene interference and provided unambiguous cis/trans phasing.

CONCLUSION

LRS is a robust diagnostic tool for CAH, offering comprehensive detection of genetic variants, including large deletions and SNVs in both and forms. Its ability to resolve pseudogenes and structural variations positions LRS as a first-tier diagnostic tool for CAH, improving accuracy, streamlining clinical workflows and ultimately benefits patients.

摘要

背景

先天性肾上腺皮质增生症(CAH)是一种常染色体隐性疾病,主要由肾上腺类固醇生成缺陷引起。传统的基因检测方法难以解决关键基因中的复杂结构变异和假基因干扰问题。我们的研究将评估长读长测序(LRS)作为CAH综合诊断工具的有效性,证明其同时检测大结构变异、单核苷酸变异(SNV)以及小插入或缺失的能力。

方法

对4例临床诊断为CAH的先证者进行详细的生化分析,包括血清17-羟孕酮、血清钠和血清钾检测。从外周血中提取基因组DNA,并使用单分子实时(SMRT)技术(太平洋生物科学公司)进行LRS检测。捕获一个覆盖相关基因以及其他与CAH相关基因的靶向基因panel。生物信息学分析包括使用Minimap2进行比对、使用Sniffles2和Medaka进行变异检测以及进行定相分析以解决假基因干扰问题。

结果

LRS在相关基因中鉴定出复合杂合和纯合变异(例如,c.293-13C>G、c.518T>A、CH-1)以及在另一相关基因中鉴定出新型复合杂合变异(c.121G>T和c.757T>G)。结合生化检测、临床表现和美国医学遗传学与基因组学学会(ACMG)指南,这些基因突变是患者发病的原因。LRS解决了假基因干扰问题,并提供了明确的顺式/反式定相。

结论

LRS是一种用于CAH的强大诊断工具,能够全面检测基因变异,包括相关基因中的大片段缺失和SNV,无论是杂合还是纯合形式。其解决假基因和结构变异的能力使LRS成为CAH的一线诊断工具,提高了诊断准确性,简化了临床工作流程,最终使患者受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2dd/12245889/b5add20cfc4c/fped-13-1603819-g001.jpg

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