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Synchronous Bioimaging of Intracellular pH and Chloride Based on LSS Fluorescent Protein.

ACS Chem. Biol.. 2016; 
ParedesJose M,IdilliAurora I,MariottiLetizia,LosiGabriele,ArslanbaevaLyaysan R,SatoSebastian Sulis,ArtoniPietro,SzczurkowskaJoanna,CanceddaLaura,RattoGian Michele,CarmignotoGiorgio,ArosioDan
Products/Services Used Details Operation
Codon Optimization Nucleotide sequence for LSSmKate2, fused at the N-term to the polypeptide linker "ASGGGGGLVPRGSASGA", was codon-optimized for expression in mammalian cells using the OptimumGene algorithm (GenScript, Inc.), Get A Quote

摘要

Ion homeostasis regulates critical physiological processes in the living cell. Intracellular chloride concentration not only contributes in setting the membrane potential of quiescent cells but it also plays a role in modulating the dynamic voltage changes during network activity. Dynamic chloride imaging demands new tools, allowing faster acquisition rates and correct accounting of concomitant pH changes. Joining a long-Stokes-shift red-fluorescent protein to a GFP variant with high sensitivity to pH and chloride, we obtained LSSmClopHensor, a genetically encoded fluorescent biosensor optimized for the simultaneous chloride and pH imaging and requiring only two excitation wavelengths (458 and 488 nm). LS... More

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