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Microbial rhodopsin
UNIVERSITY of CALIFORNIA, SAN DIEGO The
Xenorhodopsins, an Enigmatic New Class of Microbial Rhodopsins Horizontally Transferred Between Archaea and Bacteria
Microbial Rhodopsins on Leaf Surfaces of Terrestrial Plants
S42003-021-01878-9.Pdf
Lokiarchaeota Archaeon Schizorhodopsin-2 (Laszr2) Is an Inward Proton Pump Displaying a Characteristic Feature of Acid-Induced S
A Versatile Class of Microbial Rhodopsins
Color-Tuning of Natural Variants of Heliorhodopsins
The Origin of Phototrophy Reveals the Importance of Pri
The Microbial Opsin Family of Optogenetic Tools
Functional Characterization of Flavobacteria Rhodopsins Reveals a Unique Class of Light-Driven Chloride Pump in Bacteria
Directed Evolution of a Far-Red Fluorescent Rhodopsin
Engineering Microbial Rhodopsins to Expand the Optogenetic Toolkit
A Light-Driven Sodium Ion Pump in Marine Bacteria
A Unique Clade of Light-Driven Proton-Pumping Rhodopsins
Ultrasensitive Measurements of Microbial Rhodopsin Photocycles Using Photochromic FRET
Naturels Toolkit for Microbial Rhodopsin Ion Pumps
1 Exploration of Natural Red-Shifted Rhodopsins Using a Machine Learning-Based Bayesian
Imaging Voltage with Microbial Rhodopsins
Top View
Photocycle Dynamics of the Archaerhodopsin 3 Based Fluorescent Voltage Sensor Quasar1
A Distinct Lineage of Giant Viruses Brings a Rhodopsin Photosystem to Unicellular Marine Predators
Absorption and Emission Spectroscopic Investigation of the Thermal Dynamics of the Archaerhodopsin 3 Based Fluorescent Voltage Sensor Quasar1
Micrhode: a Curated Database for the Analysis of Microbial Rhodopsin
UC San Diego UC San Diego Previously Published Works
Functional Metagenomic Screen Reveals New and Diverse Microbial Rhodopsins
The Transporter–Opsin–G Protein-Coupled Receptor (TOG) Superfamily Daniel C
Eukaryotic G Protein-Coupled Receptors As Descendants of Prokaryotic Sodium-Translocating Rhodopsins Daria N
Fine Metagenomic Profile of the Mediterranean Stratified and Mixed Water Columns Revealed by Assembly and Recruitment Jose M
Structural Studies of Microbial Rhodopsins and Other Membrane Proteins by Means of X-Ray Crystallography and Computer Modeling Ivan Yu
Directed Evolution of a Bright Near-Infrared Fluorescent Rhodopsin Using a Synthetic Chromophore