Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include RNA Research and Splicing, RNA modifications and cancer, Cancer-related molecular mechanisms research, and Circular RNAs in diseases.
De novo assembly of nuclear stress bodies rearranges and enhances NFIL3 to restrain acute inflammatory responses
Pre-rRNA spatial distribution and functional organization of the nucleolus
Direct circMAN1A2(2,3,4,5)-CENPB mRNA interaction regulates cell proliferation and cancer progression
CRISPR-array-mediated imaging of non-repetitive and multiplex genomic loci in living cells
Biological role of mitochondrial TLR4‐mediated NF‐κB signaling pathway in central nervous system injury
Long non-coding RNAs: definitions, functions, challenges and recommendations
A guide to naming eukaryotic circular RNAs
Nucleolar URB1 ensures 3′ ETS rRNA removal to prevent exosome surveillance
Copper-containing chitosan-based hydrogels enabled 3D-printed scaffolds to accelerate bone repair and eliminate MRSA-related infection
Additional file 4 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 6 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 3 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 5 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 2 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Biogenesis and Regulatory Roles of Circular RNAs
Multi-color RNA imaging with CRISPR-Cas13b systems in living cells
Was Wuhan the early epicenter of the COVID-19 pandemic?—A critique
Long noncoding RNA MEG3 expressed in human dental pulp regulates LPS-Induced inflammation and odontogenic differentiation in pulpitis
Noncoding RNAs: biology and applications—a Keystone Symposia report
Structure and Degradation of Circular RNAs Regulate PKR Activation in Innate Immunity
Extensive translation of circular RNAs driven by N6-methyladenosine
Upregulation of SENP3/SMT3IP1 promotes epithelial ovarian cancer progression and forecasts poor prognosis
Upregulated TRIM32 correlates with enhanced cell proliferation and poor prognosis in hepatocellular carcinoma
PKC iota promotes cellular proliferation by accelerated G1/S transition via interaction with CDK7 in esophageal squamous cell carcinoma
Sam68 promotes cellular proliferation and predicts poor prognosis in esophageal squamous cell carcinoma