Our understanding on the folding of membrane proteins lags behind that of soluble proteins due to challenges posed by the exposure of hydrophobic regions during in vitro chemical denaturation and refolding experiments. While different folding models are accepted for soluble proteins, only the two-stage model and the long-range interactions model have been proposed so far for helical membrane proteins. To address our knowledge gap on how different membrane proteins traverse their folding pathways, we have systematically investigated the structural features of SDS-denatured states and the kinetics for reversible unfolding of sensory rhodopsin II (pSRII), a retinal-binding photophobic receptor from Natronomonas pharaonis. pSRII is difficult to...
Membrane proteins function as important communication channels of the cell and its environment that ...
AbstractSensory rhodopsins are the primary receptors of vision in animals and phototaxis in microorg...
AbstractExperimental folding studies of membrane proteins are more challenging than water-soluble pr...
Our understanding on the folding of membrane proteins lags behind that of soluble proteins due to ch...
Our understanding of the folding of membrane proteins lags behind that of soluble proteins due to th...
Sensory rhodopsin II (pSRII), a retinal-binding photophobic receptor from Natronomonas pharaonis, is...
Sensory rhodopsin II (pSRII), a retinal-binding photophobic receptor from Natronomonas pharaonis, is...
AbstractExperimental folding studies of membrane proteins are more challenging than water-soluble pr...
Membrane proteins function as important communication channels of the cell and its environment that ...
Membrane proteins function as important communication channels of the cell and its environment that ...
Little is known about the molecular nature of residual structure in unfolded states of membrane prot...
AbstractSensory rhodopsins are the primary receptors of vision in animals and phototaxis in microorg...
Experimental folding studies of membrane proteins are more challenging than water-soluble proteins b...
The translocon-unassisted folding process of transmembrane domains of the microbial rhodopsins senso...
ABSTRACT: The folding mechanisms of helical membrane proteins remain largely uncharted. Here we char...
Membrane proteins function as important communication channels of the cell and its environment that ...
AbstractSensory rhodopsins are the primary receptors of vision in animals and phototaxis in microorg...
AbstractExperimental folding studies of membrane proteins are more challenging than water-soluble pr...
Our understanding on the folding of membrane proteins lags behind that of soluble proteins due to ch...
Our understanding of the folding of membrane proteins lags behind that of soluble proteins due to th...
Sensory rhodopsin II (pSRII), a retinal-binding photophobic receptor from Natronomonas pharaonis, is...
Sensory rhodopsin II (pSRII), a retinal-binding photophobic receptor from Natronomonas pharaonis, is...
AbstractExperimental folding studies of membrane proteins are more challenging than water-soluble pr...
Membrane proteins function as important communication channels of the cell and its environment that ...
Membrane proteins function as important communication channels of the cell and its environment that ...
Little is known about the molecular nature of residual structure in unfolded states of membrane prot...
AbstractSensory rhodopsins are the primary receptors of vision in animals and phototaxis in microorg...
Experimental folding studies of membrane proteins are more challenging than water-soluble proteins b...
The translocon-unassisted folding process of transmembrane domains of the microbial rhodopsins senso...
ABSTRACT: The folding mechanisms of helical membrane proteins remain largely uncharted. Here we char...
Membrane proteins function as important communication channels of the cell and its environment that ...
AbstractSensory rhodopsins are the primary receptors of vision in animals and phototaxis in microorg...
AbstractExperimental folding studies of membrane proteins are more challenging than water-soluble pr...