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Nucleic Acids Research|September 13, 2000
H-NS mediated compaction of DNA visualised by atomic force microscopyR T Dame, C Wyman, N GoosenJournal of Bacteriology|January 1, 1987
Cloning of the genes involved in synthesis of coenzyme pyrrolo-quinoline-quinone from Acinetobacter calcoaceticusN Goosen, D A Vermaas, P van de PutteJournal of Bacteriology|February 1, 1992
A 24-amino-acid polypeptide is essential for the biosynthesis of the coenzyme pyrrolo-quinoline-quinoneN Goosen, R G Huinen, P van de PutteNucleic Acids Research|May 25, 1988
Integration host factor of Escherichia coli regulates early- and repressor transcription of bacteriophage Mu by two different mechanismsP A van Rijn, N Goosen, P van de PutteNucleic Acids Research|June 11, 1991
Analysis of the IHF binding site in the regulatory region of bacteriophage MuP A van Rijn, P van de Putte, N GoosenThe Journal of Biological Chemistry|July 28, 1995
Participation of the flank regions of the integration host factor protein in the specificity and stability of DNA bindingL Zulianello, P van Ulsen, P van de Putte, et al.Nucleic Acids Research|February 28, 1998
The C-terminal region of the Escherichia coli UvrC protein, which is homologous to the C-terminal region of the human ERCC1 protein, is involved in DNA binding and 5'-incisionG F Moolenaar, R S Uiterkamp, D A Zwijnenburg, et al.Biochemistry|February 7, 1995
Gin invertase of bacteriophage Mu is a dimer in solution, with the domain for dimerization in the N-terminal part of the proteinL Spaeny-Dekking, M van Hemert, P van de Putte, et al.Gene|December 1, 1984
Regulation of Mu transposition. II. The escherichia coli HimD protein positively controls two repressor promoters and the early promoter of bacteriophage MuN Goosen, M van Heuvel, G F Moolenaar, et al.Molecular & General Genetics : MGG|October 1, 1991
A single amino acid substitution changes the substrate specificity of quinoprotein glucose dehydrogenase in Gluconobacter oxydansA M Cleton-Jansen, S Dekker, P van de Putte, et al.Pageof 5