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Key gene network related to primary ciliary dyskinesia in hippocampus of patients with Alzheimer's disease revealed by weighted gene co-expression network analysis

    作者

    Xia, PC; Chen, J; Bai, XH; Li, M; Wang, L; Lu, ZM

    作者单位

    [Xia, Pengcheng; Bai, Xiaohui; Wang, Le; Lu, Zhiming] Shandong First Med Univ, Dept Clin Lab Med, Shandong Prov Hosp, Jinan, Shandong, Peoples R China; [Chen, Jing] Shandong First Med Univ, Discipline Anat & Pathol, Jinan, Shandong, Peoples R China; [Li, Ming] Shandong Univ, Sch Med, Jinan, Shandong, Peoples R China

    摘要

    Background Alzheimer's disease (AD) is closely related to aging, showing an increasing incidence rate for years. As one of the main brain regions involved in AD, hippocampus has been extensively studied due to its association with many human diseases. However, little is known about its association with primary ciliary dyskinesia (PCD). Material and Methods The microarray data of hippocampus on AD were retrieved from the Gene Expression Omnibus (GEO) database to construct the co-expression network by weighted gene co-expression network analysis (WGCNA). The gene network modules associated with AD screened with the common genes were further annotated based on Gene Ontology (GO) database and enriched based on the Kyoto Encyclopedia of Genes and Genomes (KEGG) database. The protein-protein interaction (PPI) network was constructed based on STRING database to identify the hub genes in the network. Results Genes involved in PCD were identified in the hippocampus of AD patients. Functional analysis revealed that these genes were mainly enriched in ciliary tissue, ciliary assembly, axoneme assembly, ciliary movement, microtubule based process, microtubule based movement, organelle assembly, axoneme dynamin complex, cell projection tissue, and microtubule cytoskeleton tissue. A total of 20 central genes, e.g., DYNLRB2, ZMYND10, DRC1, DNAH5, WDR16, TTC25, and ARMC4 were identified as hub genes related to PCD in hippocampus of AD patients. Conclusion Our study demonstrated that AD and PCD have common metabolic pathways. These common pathways provide novel evidence for further investigation of the pathophysiological mechanism and the hub genes suggest new therapeutic targets for the diagnosis and treatment of AD and PCD. Subjects Bioinformatics, Cell Biology, Molecular Biology, Neurology.

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基本信息

  • 所属机构:

    归属医师: 卢志明 王乐 白晓卉

    PMID:35637434

    UT:000805595100003

    刊名:BMC NEUROLOGY

    年,卷(期):2022年22卷1期

    页码:-null

    DOI:10.1186/s12883-022-02724-z

    附件: other

    收录:   SCIE