关键词: BCCP BCCP87 BirA:biotinoyl-5′-AMP complex C-terminal fragment of BCCP bio-5′-AMP bioO biological switch biotin carboxyl carrier protein biotin operator biotinoyl-5′-adenylate holoBirA kinetic versus equilibrium control protein:protein interactions

Mesh : Acetyl-CoA Carboxylase / metabolism Biotin / chemistry genetics metabolism Carbon-Nitrogen Ligases / chemistry metabolism Escherichia coli / genetics metabolism Escherichia coli Proteins / chemistry metabolism Fatty Acid Synthase, Type II / metabolism Gene Expression Regulation, Bacterial Kinetics Models, Biological Models, Molecular Operon Protein Binding Protein Conformation Protein Multimerization Proteins / chemistry metabolism Repressor Proteins / chemistry metabolism Transcription, Genetic

来  源:   DOI:10.1016/j.jmb.2013.07.029

Abstract:
Protein partner exchange plays a key role in regulating many biological switches. Although widespread, the mechanisms dictating protein partner identity and, therefore, the outcome of a switch have been determined for a limited number of systems. The Escherichia coli protein BirA undergoes a switch between posttranslational biotin attachment and transcription repression in response to cellular biotin demand. Moreover, the functional switch reflects formation of alternative mutually exclusive protein:protein interactions by BirA. Previous studies provided a set of alanine-substituted BirA variants with altered kinetic and equilibrium parameters of forming these interactions. In this work, DNase I footprinting measurements were employed to investigate the consequences of these altered properties for the outcome of the BirA functional switch. The results support a mechanism in which BirA availability for DNA binding and, therefore, transcription repression is controlled by the rate of the competing protein:protein interaction. However, occupancy of the transcriptional regulatory site on DNA by BirA is exquisitely tuned by the equilibrium constant governing its homodimerization.
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