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使用基因panel 测序和转录分析对俄罗斯原发性纤毛运动障碍患者的致病性遗传变异进行特征分析。

Characterization of pathogenic genetic variants in Russian patients with primary ciliary dyskinesia using gene panel sequencing and transcript analysis.

机构信息

Almazov National Medical Research Centre, Saint-Petersburg, Russia, 197341.

K.A. Raukhfus Children's City Multidisciplinary Clinical Center for High Medical Technologies, Saint-Petersburg, Russia, 191036.

出版信息

Orphanet J Rare Dis. 2024 Aug 23;19(1):310. doi: 10.1186/s13023-024-03318-3.

Abstract

BACKGROUND

Primary ciliary dyskinesia (PCD) is a group of rare genetically heterogeneous disorders caused by defective cilia and flagella motility. The clinical phenotype of PCD patients commonly includes chronic oto-sino-pulmonary disease, infertility, and, in about half of cases, laterality defects due to randomization of left-right body asymmetry. To date, pathogenic variants in more than 50 genes responsible for motile cilia structure and assembly have been reported in such patients. While multiple population-specific mutations have been described in PCD cohorts from different countries, the data on genetic spectrum of PCD in Russian population are still extremely limited.

RESULTS

The present study provides a comprehensive clinical and genetic characterization of 21 Russian families with PCD living in various country regions. Anomalies of ciliary beating in patients` respiratory epithelial cells were confirmed by high-speed video microscopy. In the most cases, custom-designed panel sequencing allowed to uncover causative variants in well-known or rarely mentioned PCD-related genes, including DNAH5, DNAH11, CFAP300, LRRC6, ZMYND10, CCDC103, HYDIN, ODAD4, DNAL1, and OFD1. The variations comprised common mutations, as well as novel genetic variants, some of which probably specific for Russian patients. Additional targeted analysis of mRNA transcripts from ciliated cells enabled us to specify functional effects of newly identified genetic variants in DNAH5 (c.2052+3G>T, c.3599-2A>G), HYDIN (c.10949-2A>G, c.1797C>G), and ZMYND10 (c.510+1G>C) on splicing process. In particular, the splice site variant c.2052+3G>T, detected in four unrelated families, resulted in skipping of exon 14 in DNAH5 transcripts and, according to haplotype analysis of affected probands, was proposed as an ancestral founder mutation in Udmurt population.

CONCLUSIONS

The reported data provide a vital insight into genetic background of primary ciliary dyskinesia in the Russian population. The findings clearly illustrate the utility of gene panel sequencing coupled with transcriptional analysis in identification and clinical interpretation of novel genetic variants.

摘要

背景

原发性纤毛运动障碍(PCD)是一组由纤毛和鞭毛运动缺陷引起的罕见遗传性异质性疾病。PCD 患者的临床表型通常包括慢性耳-鼻-肺疾病、不孕,并且约一半的病例会由于左右身体不对称的随机分配而出现侧位缺陷。迄今为止,已有 50 多种与运动性纤毛结构和组装相关的基因的致病变异在这些患者中被报道。虽然在来自不同国家的 PCD 队列中已经描述了多种人群特异性突变,但俄罗斯人群中 PCD 的遗传谱数据仍然极其有限。

结果

本研究对居住在不同国家地区的 21 个俄罗斯 PCD 家族进行了全面的临床和遗传特征分析。通过高速视频显微镜证实了患者呼吸道上皮细胞纤毛的摆动异常。在大多数情况下,定制设计的面板测序允许发现已知或很少提及的 PCD 相关基因中的致病变异,包括 DNAH5、DNAH11、CFAP300、LRRC6、ZMYND10、CCDC103、HYDIN、ODAD4、DNAL1 和 OFD1。这些变异包括常见突变和新的遗传变异,其中一些可能是俄罗斯患者特有的。对纤毛细胞 mRNA 转录本的额外靶向分析使我们能够确定新鉴定的 DNAH5(c.2052+3G>T、c.3599-2A>G)、HYDIN(c.10949-2A>G、c.1797C>G)和 ZMYND10(c.510+1G>C)基因中的遗传变异对剪接过程的功能影响。特别是,在四个无关家庭中检测到的外显子 14 跳跃的 DNAH5 转录本中的内含子 2052+3G>T 剪接位点变异,根据受影响先证者的单倍型分析,被提议为乌德穆尔特人群中的祖先创始突变。

结论

报告的数据提供了对俄罗斯人群中原发性纤毛运动障碍遗传背景的重要见解。研究结果清楚地说明了基因面板测序与转录分析相结合在鉴定和临床解释新遗传变异方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acbf/11344339/9bd967bee84e/13023_2024_3318_Fig1_HTML.jpg

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