Related Experiment Video
Updated: Aug 7, 2026

Analyzing and Building Nucleic Acid Structures with 3DNA
Published on: April 26, 2013
Modeling the Lac repressor-operator assembly: the influence of DNA looping on Lac repressor conformation
David Swigon1, Bernard D Coleman, Wilma K Olson
1Departments of Chemistry and Chemical Biology, Rutgers-The State University of New Jersey, Piscataway, NJ 08854, USA. swigon@pitt.edu
Abstract:
Repression of transcription of the Escherichia coli Lac operon by the Lac repressor (LacR) is accompanied by the simultaneous binding of LacR to two operators and the formation of a DNA loop. A recently developed theory of sequence-dependent DNA elasticity enables one to relate the fine structure of the LacR-DNA complex to a wide range of heretofore-unconnected experimental observations. Here, that theory is used to calculate the configuration and free energy of the DNA loop as a function of its length and base-pair sequence, its linking number, and the end conditions imposed by the LacR tetramer. The tetramer can assume two types of conformations. Whereas a rigid V-shaped structure is observed in the crystal, EM images show extended forms in which two dimer subunits are flexibly joined. Upon comparing our computed loop configurations with published experimental observations of permanganate sensitivities, DNase I cutting patterns, and loop stabilities, we conclude that linear DNA segments of short-to-medium chain length (50-180 bp) give rise to loops with the extended form of LacR and that loops formed within negatively supercoiled plasmids induce the V-shaped structure.
Related Concept Videos
Operon Model
Operons
Inducible Operons: lac Operon
Cooperative Binding of Transcription Regulators
Cooperative Binding of Transcription Regulators
Co-activators and Co-repressors

