Area of research
Cell Biology · Molecular Biology
Research interest
Research interests include Cell biology, Biology, Hippo signaling pathway, Mechanotransduction, Extracellular matrix, and Wnt signaling pathway.
Piezo1 regulates the mechanotransduction of soft matrix viscoelasticity
RETRACTED ARTICLE: Mitochondrial mechanotransduction through MIEF1 coordinates the nuclear response to forces
Mechanobiology of organelles: illuminating their roles in mechanosensing and mechanotransduction
Organic Selenium induces ferroptosis in pancreatic cancer cells
Mechanical regulation of chromatin and transcription
Mitochondrial fission links ECM mechanotransduction to metabolic redox homeostasis and metastatic chemotherapy resistance
Fascin1 empowers YAP mechanotransduction and promotes cholangiocarcinoma development
Crosstalk between mechanotransduction and metabolism
YAP/TAZ functions and their regulation at a glance
Mechanical Forces as Determinants of Disseminated Metastatic Cell Fate
Fascin1 empowers YAP mechanotransduction and promotes cholangiocarcinoma development
Extracellular matrix mechanical cues regulate lipid metabolism through Lipin-1 and SREBP
Impaired Mitochondrial ATP Production Downregulates Wnt Signaling via ER Stress Induction
F-actin dynamics regulates mammalian organ growth and cell fate maintenance
dNTP metabolism links mechanical cues and YAP/TAZ to cell growth and oncogene‐induced senescence
Zebrafish mutants and TEAD reporters reveal essential functions for Yap and Taz in posterior cardinal vein development
Regulation of YAP/TAZ Activity by Mechanical Cues: An Experimental Overview
Role of YAP/TAZ in cell-matrix adhesion-mediated signalling and mechanotransduction
Aerobic glycolysis tunes YAP/TAZ transcriptional activity
Control of YAP/TAZ Activity by Metabolic and Nutrient-Sensing Pathways
Functional differentiation of human pluripotent stem cells on a chip
The Biology of YAP/TAZ: Hippo Signaling and Beyond
YAP/TAZ Incorporation in the β-Catenin Destruction Complex Orchestrates the Wnt Response
Metabolic control of YAP and TAZ by the mevalonate pathway
A Mechanical Checkpoint Controls Multicellular Growth through YAP/TAZ Regulation by Actin-Processing Factors
BMP signaling controls muscle mass
Molecular Pathways: YAP and TAZ Take Center Stage in Organ Growth and Tumorigenesis
Transduction of mechanical and cytoskeletal cues by YAP and TAZ
Regulation of TGF‐β signal transduction by mono‐ and deubiquitylation of Smads