Integrated analyses delineate distinctive immunological pathways and diagnostic signatures for Behcet’s disease by leveraging gene microarray data
Behcet’s disease (BD) is a chronic inflammatory vasculitis and clinically heterogeneous disorder caused by immunocyte aberrations. Comprehensive research on gene expression patterns in BD illuminating its aetiology is lacking. E-MTAB-2713 downloaded from ArrayExpress was analysed to screen different...
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Veröffentlicht in: | Immunologic research 2023-12, Vol.71 (6), p.860-872 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Behcet’s disease (BD) is a chronic inflammatory vasculitis and clinically heterogeneous disorder caused by immunocyte aberrations. Comprehensive research on gene expression patterns in BD illuminating its aetiology is lacking. E-MTAB-2713 downloaded from ArrayExpress was analysed to screen differentially expressed genes (DEGs) using limma. Random forest (RF) and neural network (NN) classification models composed of gene signatures were established using the E-MTAB-2713 training set and subsequently verified using GSE17114. Single sample gene set enrichment analysis was used to assess immunocyte infiltration. After identifying DEGs in E-MTAB-2713, pathogen-triggered, lymphocyte-mediated and angiogenesis- and glycosylation-related inflammatory pathways were discovered to be predominant in BD episodes. Gene signatures from the RF and NN diagnostic models, together with genes enriched in angiogenesis and glycosylation pathways, well discriminated the clinical subtypes of BD manifesting as mucocutaneous, ocular and large vein thrombosis involvement in GSE17114. Moreover, a distinctive immunocyte profile revealed T, NK and dendritic cell activation in BD compared to the findings in healthy controls. Our findings suggested that
EPHX1
,
PKP2
,
EIF4B
and
HORMAD1
expression in CD14+ monocytes and
CSTF3
and
TCEANC2
expression in CD16+ neutrophils could serve as combined gene signatures for BD phenotype differentiation. Pathway genes comprising
ATP2B4
,
MYOF
and
NRP1
for angiogenesis and
GXYLT1
,
ENG
,
CD69
,
GAA
,
SIGLEC7
,
SIGLEC9
and
SIGLEC16
for glycosylation also might be applicable diagnostic markers for subtype identification. |
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ISSN: | 0257-277X 1559-0755 |
DOI: | 10.1007/s12026-023-09398-w |