已发表论文

整合转录组分析揭示多发性硬化的分子亚型和ceRNA网络

 

Authors Ji C, Ding L, Jia F, Zhang Z, Long C

Received 12 August 2024

Accepted for publication 10 December 2024

Published 21 December 2024 Volume 2024:14 Pages 115—130

DOI https://doi.org/10.2147/DNND.S491211

Checked for plagiarism Yes

Review by Single anonymous peer review

Peer reviewer comments 2

Editor who approved publication: Dr Thomas Müller

Caili Ji,1 Li Ding,1 Fumin Jia,2 Zhiyong Zhang,2 Cong Long1 

1Department of Clinical Laboratory, Jingjiang People’s Hospital Affiliated to Yangzhou University, Taizhou, Jiangsu, 214504, People’s Republic of China; 2College of Animal Science and Technology, Anhui Agricultural University, Hefei, 230036, People’s Republic of China

Correspondence: Cong Long, Department of Clinical Laboratory, Jingjiang People’s Hospital Affiliated to Yangzhou University, Taizhou, Jiangsu, 214504, People’s Republic of China, Email long79919@sina.com

Aim: Multiple sclerosis (MS) is a chronic autoimmune disease affecting the central nervous system (CNS). While extensively studied, its molecular subtypes and mechanisms remain poorly understood, hindering the identification of effective therapeutic targets.
Methods: We used ConsensusClusterPlus to analyze transcriptome data from 215 MS patient samples, identifying distinct molecular subtypes. Differential expression analysis and variability assessments were conducted to further characterize these subtypes. Additionally, circular RNAs (circRNAs) and microRNAs (miRNAs) were screened for potential ceRNA interactions.
Results: Three molecular subtypes were identified: MS-FCRL1 (C1), MS-BTG1 (C2), and MS-RPL38 (C3). Each subtype was involved in key MS-related pathways (as annotated by KEGG), but the core genes regulating these pathways differed significantly among the subtypes. Subtype C3 exhibited neurodegenerative pathway enrichment, increased immune activity, and immune cell infiltration, suggesting a more severe disease course. Further analysis revealed 18 differentially expressed circRNAs and 22 miRNAs, with EEF1D and TUBA1A as hub targets in C3.
Discussion: Differential activation of immune pathways across MS subtypes suggests specific gene expression drives disease heterogeneity. We propose a circ_0045537/miR-196a-5p/TUBA1A axis in subtype C3, modulating microtubule dynamics and worsening MS severity.

Keywords: multiple sclerosis, molecular subtypes, circRNA, miRNA, TUBA1A