Selective dimerization of the basic-region leucine-zipper (bZIP) transcription factors presents a vivid example of how a high degree of interaction specificity can be achieved within a family of structurally similar proteins. The coiled-coil motif that mediates homo- or hetero-dimerization of the bZIP proteins has been intensively studied, and a variety of methods have been proposed to predict these interactions from sequence data. In this work, we used a large quantitative set of 4,549 bZIP coiled-coil interactions to develop a predictive model that exploits knowledge of structurally conserved residue-residue interactions in the coiled-coil motif. Our model, which expresses interaction energies as a sum of interpretable residue-pair and tr...
Basic-region leucine-zipper transcription factors (bZIPs) contain a segment rich in basic amino acid...
SummaryThe ability of basic leucine zipper transcription factors for homo- or heterodimerization pro...
AbstractInteractions between naturally occurring proteins are highly specific, with protein-network ...
<div><p>Selective dimerization of the basic-region leucine-zipper (bZIP) transcription factors prese...
Selective dimerization of the basic-region leucine-zipper (bZIP) transcription factors pres-ents a v...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2014."February 2014." ...
The versatile coiled-coil protein motif is widely used to induce and control macromolecular interact...
Designing proteins or peptides that bind native protein targets can aid the development of novel rea...
The bZIP transcription factors make up a family of long α-helical proteins that dimerize based on a ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Page 428 blank. Catal...
Interaction specificity is a required feature of biological networks and a necessary characteristic ...
<p>(A) Experimentally determined dissociation constants for 4,549 bZIP interaction pairs were used a...
bZIP transcription factors make up a family of long α-helical proteins that dimerize and bind to DNA...
One of the strategies used by nature to regulate gene expression relies on the stimuli-controlled co...
Basic leucine zipper domain (bZIP) transcription factors are proteins that dimerize to bind the prom...
Basic-region leucine-zipper transcription factors (bZIPs) contain a segment rich in basic amino acid...
SummaryThe ability of basic leucine zipper transcription factors for homo- or heterodimerization pro...
AbstractInteractions between naturally occurring proteins are highly specific, with protein-network ...
<div><p>Selective dimerization of the basic-region leucine-zipper (bZIP) transcription factors prese...
Selective dimerization of the basic-region leucine-zipper (bZIP) transcription factors pres-ents a v...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2014."February 2014." ...
The versatile coiled-coil protein motif is widely used to induce and control macromolecular interact...
Designing proteins or peptides that bind native protein targets can aid the development of novel rea...
The bZIP transcription factors make up a family of long α-helical proteins that dimerize based on a ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Page 428 blank. Catal...
Interaction specificity is a required feature of biological networks and a necessary characteristic ...
<p>(A) Experimentally determined dissociation constants for 4,549 bZIP interaction pairs were used a...
bZIP transcription factors make up a family of long α-helical proteins that dimerize and bind to DNA...
One of the strategies used by nature to regulate gene expression relies on the stimuli-controlled co...
Basic leucine zipper domain (bZIP) transcription factors are proteins that dimerize to bind the prom...
Basic-region leucine-zipper transcription factors (bZIPs) contain a segment rich in basic amino acid...
SummaryThe ability of basic leucine zipper transcription factors for homo- or heterodimerization pro...
AbstractInteractions between naturally occurring proteins are highly specific, with protein-network ...