High-affinity, high-selectivity protein-protein interactions that are critical for cell survival present an evolutionary paradox: How does selectivity evolve when acquired mutations risk a lethal loss of high-affinity binding? A detailed understanding of selectivity in such complexes requires structural information on weak, noncognate complexes which can be difficult to obtain due to their transient and dynamic nature. Using NMR-based docking as a guide, we deployed a disulfide-trapping strategy on a noncognate complex between the colicin E9 endonuclease (E9 DNase) and immunity protein 2 (Im2), which is seven orders of magnitude weaker binding than the cognate femtomolar E9 DNase-Im9 interaction. The 1.77 A crystal structure of the E9 DNase...
AbstractHow ultra-high-affinity protein–protein interactions retain high specificity is still poorly...
Protein−protein transient and dynamic interactions underlie all biological processes. The molecular ...
© 2015 The Authors. Published by Elsevier Ltd. How ultra-high-affinity protein-protein interactions ...
High-affinity, high-selectivity protein-protein interactions that are critical for cell survival pre...
High-affinity, high-selectivity protein-protein interactions that are critical for cell survival pre...
How proteins achieve high-affinity binding to a specific protein partner while simultaneously exclud...
How proteins achieve high-affinity binding to a specific protein partner while simultaneously exclud...
We explore the thermodynamic basis for high affinity binding and specificity in conserved protein co...
We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a fam...
We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a fam...
Protein-protein complexes orchestrate most cellular processes such as transcription, signal transduc...
Protein-protein transient and dynamic interactions underlie all biological processes. The molecular ...
Colicins are protein antibiotics synthesised by Escherichia coli strains to target and kill related ...
Colicins are protein antibiotics synthesised by Escherichia coli strains to target and kill related ...
Colicins are protein antibiotics synthesised by Escherichia coli strains to target and kill related ...
AbstractHow ultra-high-affinity protein–protein interactions retain high specificity is still poorly...
Protein−protein transient and dynamic interactions underlie all biological processes. The molecular ...
© 2015 The Authors. Published by Elsevier Ltd. How ultra-high-affinity protein-protein interactions ...
High-affinity, high-selectivity protein-protein interactions that are critical for cell survival pre...
High-affinity, high-selectivity protein-protein interactions that are critical for cell survival pre...
How proteins achieve high-affinity binding to a specific protein partner while simultaneously exclud...
How proteins achieve high-affinity binding to a specific protein partner while simultaneously exclud...
We explore the thermodynamic basis for high affinity binding and specificity in conserved protein co...
We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a fam...
We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a fam...
Protein-protein complexes orchestrate most cellular processes such as transcription, signal transduc...
Protein-protein transient and dynamic interactions underlie all biological processes. The molecular ...
Colicins are protein antibiotics synthesised by Escherichia coli strains to target and kill related ...
Colicins are protein antibiotics synthesised by Escherichia coli strains to target and kill related ...
Colicins are protein antibiotics synthesised by Escherichia coli strains to target and kill related ...
AbstractHow ultra-high-affinity protein–protein interactions retain high specificity is still poorly...
Protein−protein transient and dynamic interactions underlie all biological processes. The molecular ...
© 2015 The Authors. Published by Elsevier Ltd. How ultra-high-affinity protein-protein interactions ...