Area of research
Molecular Biology · Infectious Diseases
Research interest
Research focused on Macaque and Acetylation, with related work in Cancer research, Enzyme, Virology. Notable publications include 'Human Infection with a Novel Avian-Origin Influenza A (H7N9) Virus', 'SIRT5 promotes IDH2 desuccinylation and G6PD deglutarylation to enhance cellular antioxidant defense', and 'Regulation of G6PD acetylation by KAT9/SIRT2 modulates NADPH homeostasis and cell survival during oxidative stress'.
Single-cell spatial transcriptome atlas and whole-brain connectivity of the macaque claustrum
Sustained mTORC1 activation in activated T cells impairs vaccine responses in older individuals
Identification and evaluation of metabolic mRNAs and key miRNAs in colorectal cancer liver metastasis
Cross-species single-cell spatial transcriptomic atlases of the cerebellar cortex
SCF <sup>FBXW5</sup> -mediated degradation of AQP3 suppresses autophagic cell death through the PDPK1-AKT-MTOR axis in hepatocellular carcinoma cells
Wild imitating vs greenhouse cultivated Dendrobium huoshanense: Chemical quality differences
CRL3Keap1 E3 ligase facilitates ubiquitin-mediated degradation of oncogenic SRX to suppress colorectal cancer progression
Circulating exosomal protein EFEMP1 and SERPINC1 as diagnostic biomarkers for epithelial ovarian cancer
Circulating TERT serves as the novel diagnostic and prognostic biomarker for the resectable NSCLC
Single-cell spatial transcriptome reveals cell-type organization in the macaque cortex
NEDD8-conjugating enzyme UBC12 as a novel therapeutic target in esophageal squamous cell carcinoma
Validation of NEDD8-conjugating enzyme UBC12 as a new therapeutic target in lung cancer
SIRT5 promotes IDH2 desuccinylation and G6PD deglutarylation to enhance cellular antioxidant defense
Insulin and mTOR Pathway Regulate HDAC3-Mediated Deacetylation and Activation of PGK1
Regulation of G6PD acetylation by KAT9/SIRT2 modulates NADPH homeostasis and cell survival during oxidative stress
Human Infection with a Novel Avian-Origin Influenza A (H7N9) Virus
Acetylation Negatively Regulates Glycogen Phosphorylase by Recruiting Protein Phosphatase 1