Area of research
Cell Biology · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Biophysics, Chemistry, Vinculin, Focal adhesion, Cell biology, and Magnetic tweezers.
In situ editing of tumour cell membranes induces aggregation and capture of PD-L1 membrane proteins for enhanced cancer immunotherapy
MyoD-family inhibitor proteins act as auxiliary subunits of Piezo channels
Force- and cell state–dependent recruitment of Piezo1 drives focal adhesion dynamics and calcium entry
Application of piconewton forces to individual filopodia reveals mechanosensory role of L-type Ca2+ channels
Force-Dependent Interactions between Talin and Full-Length Vinculin
Selective killing of transformed cells by mechanical stretch
Force-dependent binding of vinculin to α-catenin regulates cell–cell contact stability and collective cell behavior
Mechanotransmission and Mechanosensing of Human alpha-Actinin 1
EGFR family and Src family kinase interactions: mechanics matters?
Elasticity of the Transition State Leading to an Unexpected Mechanical Stabilization of Titin Immunoglobulin Domains
Molecular stretching modulates mechanosensing pathways
The mechanical response of talin
Dynamics of Equilibrium Folding and Unfolding Transitions of Titin Immunoglobulin Domain under Constant Forces
Force-dependent conformational switch of α-catenin controls vinculin binding
Mechanical activation of vinculin binding to talin locks talin in an unfolded conformation
Talin Dependent Mechanosensitivity of Cell Focal Adhesions