Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Epigenetics and DNA Methylation, Genomics and Phylogenetic Studies, Plant-Microbe Interactions and Immunity, and Pancreatic and Hepatic Oncology Research.
Cholesterol Cocrystal Ferroelectrics Modulated by Solvent Effect
RIP2/NF-κB/PD-L1 signaling pathway is involved in temozolomide resistance by inducing autophagy in glioblastoma cells
Reconstructive Phase Transition Enables Abnormal Negative Thermal Quenching of Photoluminescence in a 1D Hybrid Perovskite
Determination of six volatile fatty acids in human serum, urine and faeces by low temperature derivatisation combined with HPLC–MS/MS
Deactivation of the Unfolded Protein Response Aggravated Renal AA Amyloidosis in HSF1 Deficiency Mice
Directed evolution unlocks oxygen reactivity for a nicotine-degrading flavoenzyme
Endovascular treatment strategies and a new classification for multiple aneurysms of the ipsilateral ophthalmic segment of the internal carotid artery
MiR-200c-3p inhibits LPS-induced M1 polarization of BV2 cells by targeting RIP2
Structural Insights into the Catalytic Mechanism and Ubiquitin Recognition of USP34
Additional file 2 of mTORC1-c-Myc pathway rewires methionine metabolism for HCC progression through suppressing SIRT4 mediated ADP ribosylation of MAT2A
Additional file 3 of mTORC1-c-Myc pathway rewires methionine metabolism for HCC progression through suppressing SIRT4 mediated ADP ribosylation of MAT2A
Integrated transcriptomics and epigenomics reveal chamber-specific and species-specific characteristics of human and mouse hearts
Alkyl hydroperoxide reductase is important for oxidative stress resistance and symbiosis in<i>Azorhizobium caulinodans</i>
SIRT6 safeguards human mesenchymal stem cells from oxidative stress by coactivating NRF2
A Werner syndrome stem cell model unveils heterochromatin alterations as a driver of human aging
PTEN deficiency reprogrammes human neural stem cells towards a glioblastoma stem cell-like phenotype
Whole-genome analysis of 5-hydroxymethylcytosine and 5-methylcytosine at base resolution in the human brain