Gal repressor-operator-HU ternary complex: pathway of repressosome formation

Roy, Siddhartha ; Dimitriadis, Emilios K. ; Kar, Sudeshna ; Geanacopoulos, Mark ; Lewis, Marc S. ; Adhya, Sankar (2005) Gal repressor-operator-HU ternary complex: pathway of repressosome formation Biochemistry, 44 (14). pp. 5373-5380. ISSN 0006-2960

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Official URL: http://pubs.acs.org/doi/abs/10.1021/bi047720t

Related URL: http://dx.doi.org/10.1021/bi047720t

Abstract

DNA transaction reactions require formation of nucleoprotein complexes that involve multifaceted DNA-protein and protein-protein interactions. Genetic and biochemical studies suggested that the higher order Gal repressosome structure, which governs the transcription of two tandem gal promoters in Escherichia coli, involves sequence-specific binding of GalR repressor dimers to two operators, OE and OI, located 113 bp apart, binding of GalR to the sequence-nonspecific DNA binding protein HU, interaction of HU with an architecturally critical DNA site between the two operators, and interaction between two DNA-bound GalR dimers generating a loop of the intervening DNA segment. In this paper, we demonstrate and determine the thermodynamic parameters of several of these interactions, GalR dimer-OE, GalR tetramerization, HU-GalR, and HU-GalR-OE interactions, by analytical ultracentrifugation, fluorescence anisotropy, and fluorescence resonance energy transfer. The physiological significance of several of these interactions was confirmed by the finding that a mutant HU, which is unable to form the repressosome in vivo and in vitro, failed to show the HU-GalR interaction. The results help to construct a pathway of Gal repressosome assembly.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:43137
Deposited On:10 Jun 2011 06:01
Last Modified:10 Jun 2011 06:01

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