Dimerisation of leucine zippers results from the parallel association of alpha-helices to form a coiled coil. Coiled coils comprise a heptad repeat, denoted as (abcdefg)(n), where residues at positions a and d are hydrophobic and constitute the core of the dimer interface. Charged amino acids at the e and g positions of the coiled coil are thought to be the major influence on dimerisation specificity through the formation of attractive and repulsive interhelical electrostatic interactions. However, the variability of a-position residues in leucine zipper transcription factors prompted us to investigate their influence on dimerisation specificity. We demonstrate that mutation of a single interfacial a-position Ala residue to either Val, Ile ...
Basic region-leucine zipper (B-ZIP) proteins are a class of dimeric sequence-specific DNA-binding pr...
It is generally believed that leucine zipper regulatory proteins for DNA transcription recognize the...
Identifying the interactions that exist in the leucine zipper DNA binding proteins are crucial for t...
Various transcription factors, including C/EBP, GCN4 and members of the Fos, Jun and Myc families ha...
Leucine zippers constitute a widely observed structural motif which serves to promote both homo- and...
The leucine zipper proteins are a group of transcriptional regulators that dimerize to form a DNA bi...
SummaryProtein-protein interactions dictate the assembly of the macromolecular complexes essential f...
Program year: 1997/1998Digitized from print original stored in HDRThe dimerization specificity of a ...
c-Myc and Max are members of a subfamily of the helix-loop-helix transcription-regulating proteins. ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
The bZIP transcription factors make up a family of long α-helical proteins that dimerize based on a ...
Leucine zippers are oligomerization domains used in a wide range of proteins. Their structure is bas...
bZIP transcription factors make up a family of long α-helical proteins that dimerize and bind to DNA...
The leucine zipper structure is adopted by one family of the coiled coil proteins. Leucine zippers h...
SummaryCoiled-coil sequences in proteins commonly share a seven-amino acid repeat with nonpolar side...
Basic region-leucine zipper (B-ZIP) proteins are a class of dimeric sequence-specific DNA-binding pr...
It is generally believed that leucine zipper regulatory proteins for DNA transcription recognize the...
Identifying the interactions that exist in the leucine zipper DNA binding proteins are crucial for t...
Various transcription factors, including C/EBP, GCN4 and members of the Fos, Jun and Myc families ha...
Leucine zippers constitute a widely observed structural motif which serves to promote both homo- and...
The leucine zipper proteins are a group of transcriptional regulators that dimerize to form a DNA bi...
SummaryProtein-protein interactions dictate the assembly of the macromolecular complexes essential f...
Program year: 1997/1998Digitized from print original stored in HDRThe dimerization specificity of a ...
c-Myc and Max are members of a subfamily of the helix-loop-helix transcription-regulating proteins. ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
The bZIP transcription factors make up a family of long α-helical proteins that dimerize based on a ...
Leucine zippers are oligomerization domains used in a wide range of proteins. Their structure is bas...
bZIP transcription factors make up a family of long α-helical proteins that dimerize and bind to DNA...
The leucine zipper structure is adopted by one family of the coiled coil proteins. Leucine zippers h...
SummaryCoiled-coil sequences in proteins commonly share a seven-amino acid repeat with nonpolar side...
Basic region-leucine zipper (B-ZIP) proteins are a class of dimeric sequence-specific DNA-binding pr...
It is generally believed that leucine zipper regulatory proteins for DNA transcription recognize the...
Identifying the interactions that exist in the leucine zipper DNA binding proteins are crucial for t...