PIEZO1 ion channels are activated by mechanical stimuli, triggering intracellular chemical signals. Recent structural studies suggest that plasma membrane tension or local curvature changes modulate PIEZO1 channel gating and activation. However, whether PIEZO1 localization is governed by tension gradients or long-range mechanical perturbations across the cells is still unclear. Here, we probe the nanoscale localization of PIEZO1 on red blood cells (RBCs) at high resolution (∼30 nm), and we report for the first time the existence of submicrometric PIEZO1 clusters in native conditions. Upon interaction with Yoda1, an allosteric modulator, PIEZO1 clusters increase in abundance in regions of higher membrane tension and lower curvature. We furth...
Red blood cells (RBCs) experience significant mechanical forces while recirculating, but the consequ...
Piezo1 and Piezo2 encode mechanically activated cation channels that function as mechano-transducers...
Mechanosensitive ion channels convert external mechanical stimuli into electrochemical signals for c...
PIEZO1 ion channels are activated by mechanical stimuli, triggering intracellular chemical signals. ...
Piezo1 is a bona fide mechanosensitive ion channel ubiquitously expressed in mammalian cells. The di...
Piezo1 is a membrane nonspecific cation channel involved in red blood cells (RBCs) in the regulation...
The human mechanosensitive ion channel PIEZO1 is gated by membrane tension and regulates essential b...
Touch, hearing, and blood pressure regulation require mechanically gated ion channels that convert m...
A central question in mechanobiology is how mechanical forces acting in or on cells are transmitted ...
Piezo proteins (Piezo1 and Piezo2) are recently identified mechanically activated cation channels in...
Piezo channels are mechanically activated ion channels that confer mechanosensitivity to a variety o...
Piezo channels transduce mechanical stimuli into electrical and chemical signals to powerfully influ...
The conversion of mechanical force to chemical signals is critical for many biological processes, in...
Pancreatic ductal adenocarcinoma (PDAC) is characterized by an acidic and fibrotic stroma. The extra...
Piezo ion channels are activated by various types of mechanical stimuli and function as biological p...
Red blood cells (RBCs) experience significant mechanical forces while recirculating, but the consequ...
Piezo1 and Piezo2 encode mechanically activated cation channels that function as mechano-transducers...
Mechanosensitive ion channels convert external mechanical stimuli into electrochemical signals for c...
PIEZO1 ion channels are activated by mechanical stimuli, triggering intracellular chemical signals. ...
Piezo1 is a bona fide mechanosensitive ion channel ubiquitously expressed in mammalian cells. The di...
Piezo1 is a membrane nonspecific cation channel involved in red blood cells (RBCs) in the regulation...
The human mechanosensitive ion channel PIEZO1 is gated by membrane tension and regulates essential b...
Touch, hearing, and blood pressure regulation require mechanically gated ion channels that convert m...
A central question in mechanobiology is how mechanical forces acting in or on cells are transmitted ...
Piezo proteins (Piezo1 and Piezo2) are recently identified mechanically activated cation channels in...
Piezo channels are mechanically activated ion channels that confer mechanosensitivity to a variety o...
Piezo channels transduce mechanical stimuli into electrical and chemical signals to powerfully influ...
The conversion of mechanical force to chemical signals is critical for many biological processes, in...
Pancreatic ductal adenocarcinoma (PDAC) is characterized by an acidic and fibrotic stroma. The extra...
Piezo ion channels are activated by various types of mechanical stimuli and function as biological p...
Red blood cells (RBCs) experience significant mechanical forces while recirculating, but the consequ...
Piezo1 and Piezo2 encode mechanically activated cation channels that function as mechano-transducers...
Mechanosensitive ion channels convert external mechanical stimuli into electrochemical signals for c...