Meta‐analysis and transcriptomic analysis reveal that NKRF and ZBTB17 regulate the NF‐κB signaling pathway, contributing to the shared molecular mechanisms of Alzheimer's disease and atherosclerosis

Author:

Zhang Di1,Chen Keyan2ORCID,Shan Li Shen3

Affiliation:

1. Department of Cardiology Shengjing Hospital of China Medical University Shenyang Liaoning China

2. Laboratory Animal Science of China Medical University Shenyang Liaoning China

3. Department of Pediatrics Shengjing Hospital of China Medical University Shenyang Liaoning China

Abstract

AbstractIntroductionAlzheimer's disease (AD) and atherosclerosis (AS) are widespread diseases predominantly observed in the elderly population. Despite their prevalence, the underlying molecular interconnections between these two conditions are not well understood.MethodsUtilizing meta‐analysis, bioinformatics methodologies, and the GEO database, we systematically analyzed transcriptome data to pinpoint key genes concurrently differentially expressed in AD and AS. Our experimental validations in mouse models highlighted the prominence of two genes, NKRF (NF‐κB‐repressing factor) and ZBTB17 (MYC‐interacting zinc‐finger protein 1).ResultsThese genes appear to influence the progression of both AD and AS by modulating the NF‐κB signaling pathway, as confirmed through subsequent in vitro and in vivo studies.ConclusionsThis research uncovers a novel shared molecular pathway between AD and AS, underscoring the significant roles of NKRF and ZBTB17 in the pathogenesis of these disorders.

Publisher

Wiley

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