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The Journal of Biological Chemistry|January 25, 1990
Immunoelectron microscopic analysis of the A, B, and HU protein content of bacteriophage Mu transpososomesB D Lavoie, G ChaconasThe Journal of Biological Chemistry|June 3, 1994
A second high affinity HU binding site in the phage Mu transpososomeB D Lavoie, G ChaconasGenes & Development|December 1, 1993
Site-specific HU binding in the Mu transpososome: conversion of a sequence-independent DNA-binding protein into a chemical nucleaseB D Lavoie, G ChaconasJournal of Molecular Biology|June 17, 1999
Supercoiling-dependent site-specific binding of HU to naked Mu DNAK Kobryn, B D Lavoie, G ChaconasCurrent Biology : CB|July 1, 1996
DNA transposition: jumping gene machine, some assembly requiredG Chaconas, B D Lavoie, M A WatsonThe EMBO Journal|November 1, 1989
Action at a distance in Mu DNA transposition: an enhancer-like element is the site of action of supercoiling relief activity by integration host factor (IHF)M G Surette, B D Lavoie, G ChaconasCell|May 31, 1996
Anatomy of a flexer-DNA complex inside a higher-order transposition intermediateB D Lavoie, G S Shaw, A Millner, et al.The EMBO Journal|October 1, 1991
Structural aspects of a higher order nucleoprotein complex: induction of an altered DNA structure at the Mu-host junction of the Mu type 1 transpososomeB D Lavoie, B S Chan, R G Allison, et al.Biochemistry and Cell Biology = Biochimie Et Biologie Cellulaire|February 11, 2000
Studies on a "jumping gene machine": higher-order nucleoprotein complexes in Mu DNA transpositionG ChaconasJournal of Molecular Biology|March 21, 1997
The Mu transposase tetramer is inactive in unassisted strand transfer: an auto-allosteric effect of Mu A promotes the reaction in the absence of Mu BZ Wu, G ChaconasPageof 5