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PMID: 11735389 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

The affinity-enhancing roles of flexible linkers in two-domain DNA-binding proteins.

Biochemistry ·Vol. 40 ·No. 50 ·2001-12-18 ·Pages 15069-73

Zhou HX

Abstract

Recently many attempts have been made to design high-affinity DNA-binding proteins by linking two domains. Here a theory for guiding these designs is presented. Flexible linkers may play three types of roles: (a) linking domains which by themselves are unfolded and bind to DNA only as a folded dimer (as in a designed single-chain Arc repressor), (b) connecting domains which can separately bind to DNA (as in the Oct-1 POU domain), and (c) linking a DNA-binding domain with a dimerization domain (as in the lambda repressor). In (a), the linker keeps the protein as a folded dimer so that it is always DNA-binding-competent. In (b), the linker is predicted to enhance DNA-binding affinity over those of the individual domains (with dissociation constants K(A) and K(B)) by p(d(0))/K(B) or p(d(0))/K(A), where p(d(0)) = (3/4pil(p)bL)(3/2) exp(-3d(0)(2)/4l(p)bL)(1 - 5l(p)/4bL +...) is the probability density for the end-to-end vector of the linker with L residues to have a distance d(0). In (c), the linker is predicted to enhance the binding affinity by K(d)(C)/p(d(0)), where K(d)(C) is the dimer dissociation constant for the dimerization domain. The predicted affinity enhancements are found to be actually reached by the Oct-1 POU domain and lambda repressor. However, there is room for improvement in many of the recently designed proteins. The theoretical limits presented should provide a useful guide for current efforts of designing DNA-binding proteins.

MeSH Terms
Binding Sites DNA-Binding Proteins/chemistry,metabolism Dimerization Drug Design Drug Stability Host Cell Factor C1 Models, Chemical Octamer Transcription Factor-1 Protein Folding Protein Structure, Tertiary Repressor Proteins/chemistry,metabolism Transcription Factors/chemistry,metabolism Viral Proteins Viral Regulatory and Accessory Proteins
Chemicals
DNA-Binding Proteins Host Cell Factor C1 Octamer Transcription Factor-1 Repressor Proteins Transcription Factors Viral Proteins Viral Regulatory and Accessory Proteins phage repressor proteins
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Zhou H X
Department of Physics, Drexel University, Philadelphia, Pennsylvania 19104, USA. [email protected]
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
2001-12-18
Pages
15069-73
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Grants
NIGMS NIH HHS · GM58187 · United States
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