Ion channels form the basis of information processing in livings cells by facilitating exchange of electrical signals across and along cellular membranes. Applying the same principles to man-made systems requires development of synthetic ion channels that can alter their conductance in response to a variety of external manipulations. By combining single-molecule electrical recordings with all-atom molecular dynamics simulations, we here demonstrate a new hybrid nanopore system that allows for both a stepwise change of its conductance and a non-linear current-voltage dependence. The conductance modulation is realized by using a short flexible peptide gate that carries opposite electric charge at its ends. We show that a constant transmembran...
Biological molecular machines perform the work of supporting life at the smallest of scales, includi...
It is desirable that nanopores that are components of biosensors are gated, i.e. capable ...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
Ion channels form the basis of information processing in livings cells by facilitating exchange of e...
Ion channels form the basis of information processing in living cells by facilitating the exchange o...
Biological ion channels have been an inspirational source in the development of new devices in a var...
Switchable ion channels that are made of membrane proteins play different roles in cellular circuits...
Biological channels embedded in cell membranes regulate ionic transport by responding to external st...
AbstractNanometer-scale proteinaceous pores are the basis of ion and macromolecular transport in cel...
Biological ion channels are essential to life in all its forms. The key properties underlying their ...
We changed the nonrectifying biological porin OmpF into a nanofluidic diode. To that end, we enginee...
It is desirable that nanopores that are components of biosensors are gated, i.e., capable of control...
Control of transport across membranes, whether natural or synthetic, is fundamental in many biotechn...
Biological molecular machines perform the work of supporting life at the smallest of scales, includi...
It is desirable that nanopores that are components of biosensors are gated, i.e. capable ...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...
Ion channels form the basis of information processing in livings cells by facilitating exchange of e...
Ion channels form the basis of information processing in living cells by facilitating the exchange o...
Biological ion channels have been an inspirational source in the development of new devices in a var...
Switchable ion channels that are made of membrane proteins play different roles in cellular circuits...
Biological channels embedded in cell membranes regulate ionic transport by responding to external st...
AbstractNanometer-scale proteinaceous pores are the basis of ion and macromolecular transport in cel...
Biological ion channels are essential to life in all its forms. The key properties underlying their ...
We changed the nonrectifying biological porin OmpF into a nanofluidic diode. To that end, we enginee...
It is desirable that nanopores that are components of biosensors are gated, i.e., capable of control...
Control of transport across membranes, whether natural or synthetic, is fundamental in many biotechn...
Biological molecular machines perform the work of supporting life at the smallest of scales, includi...
It is desirable that nanopores that are components of biosensors are gated, i.e. capable ...
Biological nanopores are an essential element to the success of the lipid bilayer that makes life po...