Blocking the m(6)Am methyltransferase PCIF1 in macrophages reduces colitis severity by enhancing ECM remodeling and protecting enteric neurons, with a 50% decrease in inflammation.
Cancer-related gene regulation
Moving in bioRxiv, eLife, Nature Communications, Blood, Cancer Discovery, Cellular & molecular immunology, Circulation, Frontiers in Genetics.
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Latest in Cancer-related gene regulation
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PRMT1-SFPQ pathway controls intron retention to regulate matrix gene expression during craniofacial development, impacting tissue-specific splicing in CNCCs.
- Open access
Set1 interacts with over 100 proteins, expanding its known roles to include chromatin regulation, RNA processing, and nuclear-cytoplasmic transport in Saccharomyces cerevisiae.
- Open access
Altered m(6)A methylation patterns in mRNAs and lncRNAs are significantly associated with major depressive disorder, affecting over 600 RNAs in patient blood samples.
- Open access
Biallelic epigenetic inactivation of ZFHX3 occurs at a recurrence rate comparable to TP53 in prostate cancer, promoting oncogene upregulation and metastasis.
- Open access
Human FTO acts as an m6A demethylase in tomato, accelerating flowering by up to 50% under low-temperature stress conditions.
- Open access
TNG961 is a potent, selective oral degrader of HBS1L that effectively treats FOCAD-deleted cancers, including PRMT5 inhibitor-refractory models.
- Open access
Loss of tRNA methyltransferase Trmt61a reduces m1A modification, impairing Tfrc translation and causing iron deficiency that damages fetal liver HSPCs.
- Open access
- 1 cites
Dendritic spine nanostructure analysis reveals that increased Ecrg4 expression links to schizophrenia-related spine abnormalities in mouse models.
- Open access
Polyamines act as endogenous buffers of redox-active iron, with depletion increasing labile iron and promoting ferroptosis in mammalian cells.
- Open access
- 4 cites
Methylation-sensitive SMiLE-seq reveals 11 human transcription factors that prefer methylated DNA and 13 that avoid it, expanding understanding of DNA modification effects.
- Open access
- 5 cites
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