We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a family of conserved protein-protein complexes. Protein-protein interactions are often stabilized by a conserved interfacial hotspot that serves as the anchor for the complex, with neighboring variable residues providing specificity. A key question for such complexes is the thermodynamic basis for specificity given the dominance of the hotspot. We address this question using, as our model, colicin endonuclease (DNase)-immunity (Im) protein complexes. In this system, cognate and noncognate complexes alike share the same mechanism of association and binding hotspot, but cognate complexes (K(d) approximately 10(-)(14) M) are orders of magnitude more...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The structural determination of interacting proteins, both as individual proteins and in their compl...
© 2015 The Authors. Published by Elsevier Ltd. How ultra-high-affinity protein-protein interactions ...
We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a fam...
We explore the thermodynamic basis for high affinity binding and specificity in conserved protein co...
Bacteriocins are selective protein antibiotics that bind and kill specific bacterial species, the be...
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...
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...
Colicin E3 is a 60 kDa, multidomain protein antibiotic that targets its ribonuclease activity to an ...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The structural determination of interacting proteins, both as individual proteins and in their compl...
© 2015 The Authors. Published by Elsevier Ltd. How ultra-high-affinity protein-protein interactions ...
We explore the thermodynamic strategies used to achieve specific, high-affinity binding within a fam...
We explore the thermodynamic basis for high affinity binding and specificity in conserved protein co...
Bacteriocins are selective protein antibiotics that bind and kill specific bacterial species, the be...
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...
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...
Colicin E3 is a 60 kDa, multidomain protein antibiotic that targets its ribonuclease activity to an ...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The family of conserved colicin DNases E2, E7, E8, and E9 are microbial toxins that kill bacteria th...
The structural determination of interacting proteins, both as individual proteins and in their compl...
© 2015 The Authors. Published by Elsevier Ltd. How ultra-high-affinity protein-protein interactions ...