Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Plant Molecular Biology Research, Cancer-related molecular mechanisms research, RNA Research and Splicing, and RNA modifications and cancer.
Phase-separated NDF−FACT condensates facilitate transcription elongation on chromatin
Repair spinal cord injury with a versatile anti-oxidant and neural regenerative nanoplatform
Revealing novel and conservative CD8+T-cell epitopes with MHC B2 restriction on ALV-J
De-ubiquitination of SAMHD1 by USP7 promotes DNA damage repair to overcome oncogenic stress and affect chemotherapy sensitivity
Limonoids from the roots of Melia azedarach and their anti-inflammatory activity
Preparation, characterization, and osteogenic activity mechanism of casein phosphopeptide-calcium chelate
A Real-Time Automated System for Monitoring Individual Feed Intake and Body Weight of Group-Housed Young Chickens
The Transcriptional Differences of Avian CD4+CD8+ Double-Positive T Cells and CD8+ T Cells From Peripheral Blood of ALV-J Infected Chickens Revealed by Smart-Seq2
Chicken peripheral blood lymphocyte response to ALV-J infection assessed by single-cell RNA sequencing
NoncoRNA: a database of experimentally supported non-coding RNAs and drug targets in cancer
Ribosomes guide pachytene piRNA formation on long intergenic piRNA precursors
A Comprehensive Map of Intron Branchpoints and Lariat RNAs in Plants
QKI deficiency maintains glioma stem cell stemness by activating the SHH/GLI1 signaling pathway
Phosphorylation of SMC1A promotes hepatocellular carcinoma cell proliferation and migration
The Protein Phosphatase 4 and SMEK1 Complex Dephosphorylates HYL1 to Promote miRNA Biogenesis by Antagonizing the MAPK Cascade in Arabidopsis
A lariat-derived circular RNA is required for plant development in Arabidopsis
Intron Lariat RNA Inhibits MicroRNA Biogenesis by Sequestering the Dicing Complex in Arabidopsis
The ontogeny of cKIT+ human primordial germ cells proves to be a resource for human germ line reprogramming, imprint erasure and in vitro differentiation