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RMRP变异体在软骨毛发发育不全中抑制细胞周期检查点通路。

RMRP variants inhibit the cell cycle checkpoints pathway in cartilage‑hair hypoplasia.

作者信息

Gao Jian, Zheng Junge, Chen Shiguo, Lin Sheng, Duan Shan

机构信息

Laboratory of Molecular Medicine, Institute of Maternal and Child Medicine Research, Shenzhen Maternity and Child Healthcare Hospital, Shenzhen, Guangdong 518040, P.R. China.

Laboratory of Medical Genetics, Shenzhen Health Development Research and Data Management Center, Shenzhen, Guangdong 518028, P.R. China.

出版信息

Mol Med Rep. 2025 Mar;31(3). doi: 10.3892/mmr.2025.13446. Epub 2025 Jan 31.

Abstract

Cartilage‑hair hypoplasia (CHH) is an autosomal recessive form of metaphyseal chondrodysplasia caused by RNA component of mitochondrial RNA processing endoribonuclease (RMRP) gene variants; however, its molecular etiology remains unclear. Whole‑exome sequencing was performed to detect possible pathogenic variants in a patient with a typical short stature and sparse hair. A co‑segregation analysis was also conducted and variants in the family members of the patient were confirmed by Sanger sequencing. A novel compound heterozygous variant in RMRP (NR_003051.4: n.‑21_‑2dup and n.197C>T) was identified in the affected patient. Data from 2 years and 4 months of follow‑up showed a positive effect of growth hormone (GH) therapy on height. Subsequently, two gene expression profiles associated with CHH were obtained from the EMBL‑EBI ENA and ArrayExpress databases. Differentially expressed genes between patients with CHH and healthy controls were selected using R software and were subjected to core analysis using ingenuity pathway analysis (IPA) software. IPA core analysis showed that the 'cell cycle checkpoints' was the most prominent canonical pathway, and the top enriched diseases and functions included various types of cancer, immunological diseases, development disorders and respiratory diseases. The integrative analysis displayed that RMRP can regulate the aberrant expression of downstream targets mainly via the transcription factor TP53, which results in the inhibition of 'cell cycle checkpoints'; eventually, functions associated with the CHH phenotype, such as 'growth failure or short stature' are activated. In conclusion, novel disease‑causing genetic variants of RMRP expand the genetic etiology of CHH, which must be clinically differentiated from achondroplasia. The findings of the present study provide new insights into the mechanisms underlying CHH.

摘要

软骨毛发发育不全(CHH)是一种常染色体隐性形式的干骺端软骨发育异常,由线粒体RNA加工内切核糖核酸酶(RMRP)基因变异的RNA成分引起;然而,其分子病因仍不清楚。对一名典型身材矮小且头发稀疏的患者进行了全外显子测序,以检测可能的致病变异。还进行了共分离分析,并通过Sanger测序确认了患者家庭成员中的变异。在受影响的患者中鉴定出RMRP中的一种新的复合杂合变异(NR_003051.4:n.-21_-2dup和n.197C>T)。两年零四个月的随访数据显示生长激素(GH)治疗对身高有积极影响。随后,从EMBL-EBI ENA和ArrayExpress数据库中获得了两个与CHH相关的基因表达谱。使用R软件选择CHH患者和健康对照之间的差异表达基因,并使用 Ingenuity Pathway Analysis(IPA)软件进行核心分析。IPA核心分析表明,“细胞周期检查点”是最突出的经典途径,最富集的疾病和功能包括各种类型的癌症、免疫疾病、发育障碍和呼吸系统疾病。综合分析显示,RMRP主要通过转录因子TP53调节下游靶点的异常表达,从而导致“细胞周期检查点”的抑制;最终,激活与CHH表型相关的功能,如“生长衰竭或身材矮小”。总之,RMRP新的致病基因变异扩展了CHH的遗传病因,临床上必须将其与软骨发育不全区分开来。本研究结果为CHH的潜在机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ddb/11800184/275015b20506/mmr-31-03-13446-g00.jpg

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