Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), however, conventional patch clamping is laborious and success and output depends on the skills of the operator. Even though automated patch systems solve these problems for other ion channels, they could not be applied to MSCs. Here, we report on activation and single channel analysis of a bacterial mechanosensitive ion channel using an automated patch clamp system. With the automated system, we could patch not only giant unilamellar liposomes but also giant Escherichia coli (E. coli) spheroplasts. The tension sensitivity and channel kinetics data obtained in the automated system were in good agreement with that obtained from the conventional ...
AbstractSince their discovery in Escherichia coli some 20 years ago, studies of bacterial mechanosen...
Much of our knowledge of ion-transport mechanisms in plant cell membranes comes from experiments usi...
AbstractKv2.1, the voltage-gated ion channel, is ubiquitously expressed in variety of tissues and dy...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
We have modified the procedure of Criado and Keller (1987) to study ion channels of Escherichia coli...
Ion channel studies have been focused on ion channels from animal and human cells over many years. B...
Mechanosensitive (MS) channels are implicated in pathologies of the renal and pulmonary systems. Abn...
Mechanosensitive ion channels (MSCs) which could provide for fast osmoregulatory responses in bacter...
Kv2.1, the voltage-gated ion channel, is ubiquitously expressed in variety of tissues and dysfunctio...
Mechanosensitive (MS) ion channels are the primary molecular transducers of mechanical force into el...
© Springer Science+Business Media Dordrecht 2012. Since their discovery 25 years ago mechanosensitiv...
Since their discovery 25 years ago mechanosensitive (MS) ion channels have been the topic of intensi...
AbstractSince their discovery in Escherichia coli some 20 years ago, studies of bacterial mechanosen...
Much of our knowledge of ion-transport mechanisms in plant cell membranes comes from experiments usi...
AbstractKv2.1, the voltage-gated ion channel, is ubiquitously expressed in variety of tissues and dy...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
Patch clamp electrophysiology is the main technique to study mechanosensitive ion channels (MSCs), h...
We have modified the procedure of Criado and Keller (1987) to study ion channels of Escherichia coli...
Ion channel studies have been focused on ion channels from animal and human cells over many years. B...
Mechanosensitive (MS) channels are implicated in pathologies of the renal and pulmonary systems. Abn...
Mechanosensitive ion channels (MSCs) which could provide for fast osmoregulatory responses in bacter...
Kv2.1, the voltage-gated ion channel, is ubiquitously expressed in variety of tissues and dysfunctio...
Mechanosensitive (MS) ion channels are the primary molecular transducers of mechanical force into el...
© Springer Science+Business Media Dordrecht 2012. Since their discovery 25 years ago mechanosensitiv...
Since their discovery 25 years ago mechanosensitive (MS) ion channels have been the topic of intensi...
AbstractSince their discovery in Escherichia coli some 20 years ago, studies of bacterial mechanosen...
Much of our knowledge of ion-transport mechanisms in plant cell membranes comes from experiments usi...
AbstractKv2.1, the voltage-gated ion channel, is ubiquitously expressed in variety of tissues and dy...