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Tuning the Sensitivity of Genetically Encoded Fluorescent Potassium Indicators through Structure-Guided and Genome Mining Strategies

ACS Sens. 2022-04; 
Cristina C Torres Cabán, Minghan Yang, Cuixin Lai, Lina Yang, Fedor V Subach, Brian O Smith, Kiryl D Piatkevich, Edward S Boyden
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Custom Vector Construction … K + titration was conducted at constant 5 mM Na + with an increasing concentration of 0.1–… into the pBAD-HisD vector were done by Genscript. The genes were codon-optimized for … Get A Quote

摘要

Genetically encoded potassium indicators lack optimal binding affinity for monitoring intracellular dynamics in mammalian cells. Through structure-guided design and genome mining of potassium binding proteins, we developed green fluorescent potassium indicators with a broad range of binding affinities. KRaION1 (K ratiometric indicator for optical imaging based on mNeonGreen 1), based on the insertion of a potassium binding protein, Kbp, from (Ec-Kbp) into the fluorescent protein mNeonGreen, exhibits an isotonically measured of 69 ± 10 mM (mean ± standard deviation used throughout). We identified Ec-Kbp's binding site using NMR spectroscopy to detect protein-thallium scalar couplings and refined the structur... More

关键词

NMR structure, fluorescent protein, genome mining, potassium sensor, protein engineering, rational design