1.Diagnostic and predictive value of ferroptosis-related genes in patients with ulcerative colitis.
Rongmao HE ; Zeyang FANG ; Yunyun ZHANG ; Youliang WU ; Shixiu LIANG ; Tao JI ; Kequan CHEN ; Siqi WANG
Journal of Southern Medical University 2025;45(9):1927-1937
OBJECTIVES:
To explore the value of ferroptose-related genes in the diagnosis and prediction of ulcerative colitis (UC).
METHODS:
We used UC dataset from the GEO database to screen for differentially expressed genes (DEGs) in UC. The DEGs related to ferroptositis were screened from the FerrDb database and their functions were analyzed. The hub genes were identified by constructing the protein-protein interaction network (PPI), the differences in immune infiltration levels between UC and the control group were evaluated using CIBERSORT, and the diagnostic values of the hub genes for UC were verified by using the training set. In a mouse model of UC, we examined the expression levels of the hub genes in the colon tissues of the mice using real-time fluorescence quantitative PCR (qPCR).
RESULTS:
We identified a total of 76 DEGs related to ferroptosis. Functional enrichment analysis showed that these genes were significantly enriched in ferroptosis and hypoxia pathways. The PPI network identified 10 hub genes, and 9 of them were highly expressed in UC. Analysis of immune cell infiltration showed that 27 cell types were significantly increased in UC (P<0.05), and the immune checkpoints-related genes had the strongest correlation with the hub gene PPARG (P<0.05). Verification analysis using the training set showed that P4HB, PPARG and STAT3 had the best predictive value for UC (P<0.05). In the UC mouse model, the expression of PPARG was significantly decreased and the expressions of P4HB and STAT3 were significantly increased in the colon tissues of the mice as compared with the normal mice.
CONCLUSIONS
Ferroptose-related genes have significant value for diagnosis and prediction of UC.
Colitis, Ulcerative/genetics*
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Animals
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Mice
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Ferroptosis/genetics*
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Humans
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Protein Interaction Maps
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Disease Models, Animal
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Gene Expression Profiling
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STAT3 Transcription Factor/genetics*
2.Multi-omics Analyses Provide Insight into the Biosynthesis Pathways of Fucoxanthin in Isochrysis galbana
Chen DUO ; Yuan XUE ; Zheng XUEHAI ; Fang JINGPING ; Lin GANG ; Li RONGMAO ; Chen JIANNAN ; He WENJIN ; Huang ZHEN ; Fan WENFANG ; Liang LIMIN ; Lin CHENTAO ; Zhu JINMAO ; Chen YOUQIANG ; Xue TING
Genomics, Proteomics & Bioinformatics 2022;(6):1138-1153
Isochrysis galbana is considered an ideal bait for functional foods and nutraceuticals of humans because of its high fucoxanthin(Fx)content.However,multi-omics analysis of the regula-tory networks for Fx biosynthesis in I.galbana has not been reported.In this study,we report a high-quality genome assembly of I.galbana LG007,which has a genome size of 92.73 Mb,with a contig N50 of 6.99 Mb and 14,900 protein-coding genes.Phylogenetic analysis confirmed the monophyly of Haptophyta,with I.galbana sister to Emiliania huxleyi and Chrysochromulina tobinii.Evolutionary analysis revealed an estimated divergence time between I.galbana and E.huxleyi of~133 million years ago.Gene family analysis indicated that lipid metabolism-related genes exhibited significant expansion,including IgPLMT,IgOAR1,and IgDEGS1.Metabolome analysis showed that the content of carotenoids in I.galbana cultured under green light for 7 days was higher than that under white light,and β-carotene was the main carotenoid,accounting for 79.09%of the total carotenoids.Comprehensive multi-omics analysis revealed that the content of β-carotene,antheraxanthin,zeaxanthin,and Fx was increased by green light induction,which was significantly correlated with the expression of IgMYB98,IgZDS,IgPDS,IgLHCX2,IgZEP,IgLCYb,and IgNSY.These findings contribute to the understanding of Fx biosynthesis and its regulation,pro-viding a valuable reference for food and pharmaceutical applications.

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