TY - JOUR
T1 - Bioinformatic and mutational analysis of channelrhodopsin-2 protein cation-conducting pathway
AU - Plazzo, Anna Pia
AU - De Franceschi, Nicola
AU - Da Broi, Francesca
AU - Zonta, Francesco
AU - Sanasi, Maria Federica
AU - Filippini, Francesco
AU - Mongillo, Marco
PY - 2012/2/10
Y1 - 2012/2/10
N2 - Channelrhodopsin-2 (ChR2) is a light-gated cation channel widely used as a biotechnological tool to control membrane depolarization in various cell types and tissues. Although several ChR2 variants with modified properties have been generated, the structural determinants of the protein function are largely unresolved. We used bioinformatic modeling of the ChR2 structure to identify the putative cationic pathway within the channel, which is formed by a system of inner cavities that are uniquely present in this microbial rhodopsin. Site-directed mutagenesis combined with patch clamp analysis in HeLa cells was used to determine key residues involved in ChR2 conductance and selectivity. Among them, Gln-56 is important for ion conductance, whereas Ser-63, Thr-250, and Asn-258 are previously unrecognized residues involved in ion selectivity and photocurrent kinetics. This study widens the current structural information on ChR2 and can assist in the design of new improved variants for specific biological applications.
AB - Channelrhodopsin-2 (ChR2) is a light-gated cation channel widely used as a biotechnological tool to control membrane depolarization in various cell types and tissues. Although several ChR2 variants with modified properties have been generated, the structural determinants of the protein function are largely unresolved. We used bioinformatic modeling of the ChR2 structure to identify the putative cationic pathway within the channel, which is formed by a system of inner cavities that are uniquely present in this microbial rhodopsin. Site-directed mutagenesis combined with patch clamp analysis in HeLa cells was used to determine key residues involved in ChR2 conductance and selectivity. Among them, Gln-56 is important for ion conductance, whereas Ser-63, Thr-250, and Asn-258 are previously unrecognized residues involved in ion selectivity and photocurrent kinetics. This study widens the current structural information on ChR2 and can assist in the design of new improved variants for specific biological applications.
UR - http://www.scopus.com/inward/record.url?scp=84856871975&partnerID=8YFLogxK
U2 - 10.1074/jbc.M111.326207
DO - 10.1074/jbc.M111.326207
M3 - Article
C2 - 22139833
AN - SCOPUS:84856871975
SN - 0021-9258
VL - 287
SP - 4818
EP - 4825
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 7
ER -