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A Superfolder Green Fluorescent Protein-Based Biosensor Allows Monitoring of Chloride in the Endoplasmic Reticulum | ACS Sensors
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The mechanism of folding robustness revealed by the crystal structure of extra‐superfolder GFP - Choi - 2017 - FEBS Letters - Wiley Online Library
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Efficient expression of codon-adapted affinity tagged super folder green fluorescent protein for synchronous protein localization and affinity purification studies in Tetrahymena thermophila | BMC Biotechnology | Full Text
![Nick Coleman on Twitter: "Wow. So much interest in fluoroproteins! A few people have asked about our free-use GFP. See example below how hard it kicks the ass of original superfolder GFP. Nick Coleman on Twitter: "Wow. So much interest in fluoroproteins! A few people have asked about our free-use GFP. See example below how hard it kicks the ass of original superfolder GFP.](https://pbs.twimg.com/media/D4ZWoAWUwAEawxF.jpg:large)
Nick Coleman on Twitter: "Wow. So much interest in fluoroproteins! A few people have asked about our free-use GFP. See example below how hard it kicks the ass of original superfolder GFP.
Laboratory Evolution of Fast-Folding Green Fluorescent Protein Using Secretory Pathway Quality Control | PLOS ONE
![A Superfolder Green Fluorescent Protein-Based Biosensor Allows Monitoring of Chloride in the Endoplasmic Reticulum | ACS Sensors A Superfolder Green Fluorescent Protein-Based Biosensor Allows Monitoring of Chloride in the Endoplasmic Reticulum | ACS Sensors](https://pubs.acs.org/cms/10.1021/acssensors.2c00626/asset/images/large/se2c00626_0007.jpeg)
A Superfolder Green Fluorescent Protein-Based Biosensor Allows Monitoring of Chloride in the Endoplasmic Reticulum | ACS Sensors
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A photostable monomeric superfolder green fluorescent protein - Valbuena - 2020 - Traffic - Wiley Online Library
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PDF] Development and Applications of Superfolder and Split Fluorescent Protein Detection Systems in Biology | Semantic Scholar
Substitutional landscape of a split fluorescent protein fragment using high-density peptide microarrays | PLOS ONE
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