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International Journal of Molecular Sciences· 2026Q1

Cell Tropism-Related Gene Signatures in MDD Identified by Transcriptomic Analysis and Rat Model Validation

Jie Min, Rongrong Jiang, Qiuyue Xu, Yu Chen et al.

Short summary

A three-gene signature (CXCL2, NRG1, C3AR1) derived from peripheral blood transcriptomics shows an 88.9% AUC for diagnosing Major Depressive Disorder (MDD) and is validated in a rat model.

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Key points

  • A three-gene signature (CXCL2, NRG1, C3AR1) was identified as a potential biomarker for Major Depressive Disorder (MDD) based on peripheral blood transcriptomic analysis.
  • The chemotaxis-related gene signature achieved an exploratory AUC of 0.889 for MDD diagnosis in the development cohort.
  • These three genes correlate with specific immune cell abundances (monocytes/neutrophils, T cells) and show consistent upregulation in a CUMS rat model.
  • In silico simulations suggest that CXCL2 and NRG1 perturbations can lead to transcriptional changes in other genes like RORB and NTNG1.

AI-generated from the title and abstract; the full text is not read.

Abstract

Major depressive disorder (MDD) is associated with immune dysregulation, but the contribution of chemotaxis-related genes remains incompletely understood. This study aimed to identify chemotaxis-related signatures in MDD and evaluate their diagnostic relevance. Two peripheral-blood microarray datasets (GSE76826 and GSE38206) were integrated after batch correction, and differentially expressed genes were intersected with the GOBP_TAXIS gene set. Hub genes were selected using random forest and SVM-RFE and evaluated by logistic regression, ROC, calibration, and decision curve analyses. Immune-cell abundance, molecular subtypes, single-nucleus expression, and in silico gene-knockout effects were further examined, followed by qRT-PCR and Western blot validation in a CUMS rat model. The integrated cohort included 21 controls and 29 MDD cases. GOBP_TAXIS activity was increased in MDD (p < 0.001), and seven candidate genes yielded three upregulated hub genes (CXCL2, NRG1, and C3AR1). The fixed three-gene model yielded an exploratory AUC of 0.889 in the development cohort. All three genes correlated positively with monocytes/neutrophils and negatively with T cells. Single-cell analysis revealed cell-specific enrichment, while in silico knockout simulations predicted transcriptional changes involving RORB and NTNG1 following virtual perturbation of CXCL2 and NRG1. Animal experiments confirmed consistent upregulation at both transcriptional and translational levels. CXCL2, NRG1, and C3AR1 represent candidate chemotaxis-related biomarkers for MDD and are associated with distinct immune-cell abundance patterns and inflammatory signatures, warranting further functional validation.

The authors' abstract, as published at the source. International Journal of Molecular Sciences, 2026 · DOI ↗

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Field: Biological Psychiatry

Biological PsychiatryNeuroscience