Toward the realization of nanoscale device control, we report a molecular valve embedded in a membrane that can be opened by illumination with long-wavelength ultraviolet (366 nanometers) light and then resealed by visible irradiation. The valve consists of a channel protein, the mechanosensitive channel of large conductance (MscL) from Escherichia coli, modified by attachment of synthetic compounds that undergo light-induced charge separation to reversibly open and close a 3-nanometer pore. The system is compatible with a classical encapsulation system, the liposome, and external photochemical control over transport through the channel is achieved.
In nature, biological machines can perform sophisticated and subtle functions to maintain the metabo...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
<div><p>The mechanosensitive channel of large conductance (MscL) is a protein that responds to membr...
Toward the realization of nanoscale device control, we report a molecular valve embedded in a membra...
This protocol details the chemical modification of the mechanosensitive channel of large-conductance...
The mechanosensitive channel of large conductance, MscL, has been proposed as a triggered nanovalve ...
MscL acts as an osmotically-activated nanovalve, allowing bacteria to respond to hypo-osmotic stress...
Nanopores are powerful nanodevices that puncture semifluid membranes to enable transport of molecula...
In recent years, engineered biological pores responsive to external stimuli have been fruitfully use...
A mechano-gated membrane channel protein is used as a controllable, nonselective, large, aqueous por...
A mechano-gated membrane channel protein is used as a controllable, nonselective, large, aqueous por...
Controlling the biological activity of chemical probes with light is of interest in many different a...
4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the opti...
In order to reduce the toxicity and increase the efficacy of drugs, there is a need for smart drug d...
The mechanosensitive channel of large conductance (MscL) is a protein that responds to membrane tens...
In nature, biological machines can perform sophisticated and subtle functions to maintain the metabo...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
<div><p>The mechanosensitive channel of large conductance (MscL) is a protein that responds to membr...
Toward the realization of nanoscale device control, we report a molecular valve embedded in a membra...
This protocol details the chemical modification of the mechanosensitive channel of large-conductance...
The mechanosensitive channel of large conductance, MscL, has been proposed as a triggered nanovalve ...
MscL acts as an osmotically-activated nanovalve, allowing bacteria to respond to hypo-osmotic stress...
Nanopores are powerful nanodevices that puncture semifluid membranes to enable transport of molecula...
In recent years, engineered biological pores responsive to external stimuli have been fruitfully use...
A mechano-gated membrane channel protein is used as a controllable, nonselective, large, aqueous por...
A mechano-gated membrane channel protein is used as a controllable, nonselective, large, aqueous por...
Controlling the biological activity of chemical probes with light is of interest in many different a...
4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the opti...
In order to reduce the toxicity and increase the efficacy of drugs, there is a need for smart drug d...
The mechanosensitive channel of large conductance (MscL) is a protein that responds to membrane tens...
In nature, biological machines can perform sophisticated and subtle functions to maintain the metabo...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
<div><p>The mechanosensitive channel of large conductance (MscL) is a protein that responds to membr...