The use of unnatural fluorogenic molecules widely expands the pallet of available genetically encoded fluorescent imaging tools through the design of fluorogen activating proteins (FAPs). While there is already a handful of such probes available, each of them went through laborious cycles of in vitro screening and selection. Computational modeling approaches are evolving incredibly fast right now and are demonstrating great results in many applications, including de novo protein design. It suggests that the easier task of fine-tuning the fluorogen-binding properties of an already functional protein in silico should be readily achievable. To test this hypothesis, we used Rosetta for computational ligand docking followed by protein binding po...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
Fluorescent proteins (FPs) have, over the last two decades, revolutionized the way biology and bio...
One of the greatest tools to study the complicated cellular machinery at the micro- and nanometer sc...
Chemical fluorophores offer tremendous size and photophysical advantages over fluorescent proteins b...
In current biology, there is a noticeable trend in developing new tools and methods for targeting pr...
<p>Novel fluorescent tools such as green fluorescent protein analogues and fluorogen activating prot...
Thesis (Ph.D.)--University of Washington, 2019Recent advances in de novo protein design have enabled...
Chemical fluorophores offer tremendous size and photophysical advantages over fluorescent proteins b...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, February 2014.Catalo...
Structural analyses guide the rational design of mutant fluorogen-activating proteins with enhanced ...
Computational design has been used with mixed success for the design of protein surfaces, with direc...
Through the efforts of many groups, a wide range of fluorescent protein reporters and sensors based ...
Protein binding to small molecules is fundamental to many biological processes, yet it remains chall...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
Through the efforts of many groups, a wide range of fluorescent protein reporters and sensors based ...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
Fluorescent proteins (FPs) have, over the last two decades, revolutionized the way biology and bio...
One of the greatest tools to study the complicated cellular machinery at the micro- and nanometer sc...
Chemical fluorophores offer tremendous size and photophysical advantages over fluorescent proteins b...
In current biology, there is a noticeable trend in developing new tools and methods for targeting pr...
<p>Novel fluorescent tools such as green fluorescent protein analogues and fluorogen activating prot...
Thesis (Ph.D.)--University of Washington, 2019Recent advances in de novo protein design have enabled...
Chemical fluorophores offer tremendous size and photophysical advantages over fluorescent proteins b...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, February 2014.Catalo...
Structural analyses guide the rational design of mutant fluorogen-activating proteins with enhanced ...
Computational design has been used with mixed success for the design of protein surfaces, with direc...
Through the efforts of many groups, a wide range of fluorescent protein reporters and sensors based ...
Protein binding to small molecules is fundamental to many biological processes, yet it remains chall...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
Through the efforts of many groups, a wide range of fluorescent protein reporters and sensors based ...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
Fluorescent proteins (FPs) have, over the last two decades, revolutionized the way biology and bio...
One of the greatest tools to study the complicated cellular machinery at the micro- and nanometer sc...