Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three domains of life. A member of this protein family, Archaerhodopsin-3 (Arch) of halobacterium Halorubrum sodomense, was recently shown to function as a fluorescent indicator of membrane potential when expressed in mammalian neurons. Arch fluorescence, however, is very dim and is not optimal for applications in live-cell imaging. We used directed evolution to identify mutations that dramatically improve the absolute brightness of Arch, as confirmed biochemically and with livecell imaging (in Escherichia coli and human embryonic kidney 293 cells). In some fluorescent Arch variants, the pKaof the protonated Schiff-base linkage to retinal is near neu...
The first microbial rhodopsin, a light-driven proton pump bacteriorhodopsin from Halobacterium salin...
Light is indispensable for most life forms, and all organisms have evolved in order to harness or ut...
Probing the neural circuit dynamics underlying behaviour would benefit greatly from improved genetic...
Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three do...
Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three do...
Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three do...
Rhodopsins had long been considered non-fluorescent until a peculiar voltage-sensitive fluorescence ...
Rhodopsins had long been considered non-fluorescent until a peculiar voltage-sensitive fluorescence ...
Microbial rhodopsins are proteins that act as light driven proton pumps located in the plasma membra...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
By engineering a microbial rhodopsin, Archaerhodopsin-3 (Arch), to bind a synthetic chromophore, mer...
Microbial rhodopsins are proteins that act as light driven proton pumps located in the plasma membra...
A longstanding goal in neuroscience has been to develop techniques for imaging the voltage dynamics ...
The first member and eponym of the rhodopsin family was identified in the 1930s as the visual pigmen...
The first microbial rhodopsin, a light-driven proton pump bacteriorhodopsin from Halobacterium salin...
Light is indispensable for most life forms, and all organisms have evolved in order to harness or ut...
Probing the neural circuit dynamics underlying behaviour would benefit greatly from improved genetic...
Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three do...
Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three do...
Microbial rhodopsins are a diverse group of photoactive transmembrane proteins found in all three do...
Rhodopsins had long been considered non-fluorescent until a peculiar voltage-sensitive fluorescence ...
Rhodopsins had long been considered non-fluorescent until a peculiar voltage-sensitive fluorescence ...
Microbial rhodopsins are proteins that act as light driven proton pumps located in the plasma membra...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
Genetically encoded voltage indicators, particularly those based on microbial rhodopsins, are gainin...
By engineering a microbial rhodopsin, Archaerhodopsin-3 (Arch), to bind a synthetic chromophore, mer...
Microbial rhodopsins are proteins that act as light driven proton pumps located in the plasma membra...
A longstanding goal in neuroscience has been to develop techniques for imaging the voltage dynamics ...
The first member and eponym of the rhodopsin family was identified in the 1930s as the visual pigmen...
The first microbial rhodopsin, a light-driven proton pump bacteriorhodopsin from Halobacterium salin...
Light is indispensable for most life forms, and all organisms have evolved in order to harness or ut...
Probing the neural circuit dynamics underlying behaviour would benefit greatly from improved genetic...