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Biophysical Journal|March 1, 1997
Histone H1 preferentially binds to superhelical DNA molecules of higher compactionM Ivanchenko, J Zlatanova, K van HoldeThe Journal of Biological Chemistry|October 3, 1998
The non-histone chromatin protein HMG1 protects linker DNA on the side opposite to that protected by linker histonesW An, K van Holde, J ZlatanovaFASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|September 7, 2000
Linker histone binding and displacement: versatile mechanism for transcriptional regulationJ Zlatanova, P Caiafa, K Van HoldeBiochemical and Biophysical Research Communications|September 13, 1996
Prokaryotic DNA ligases unwind superhelical DNAM Ivanchenko, K van Holde, J ZlatanovaNucleic Acids Research|August 15, 1998
Linker histone protection of chromatosomes reconstituted on 5S rDNA from Xenopus borealis:a reinvestigationW An, K van Holde, J ZlatanovaBioscience Reports|October 1, 1989
Some features of DNA fragments associated in vivo with the nuclear laminaR Christova, J Yaneva, Z Galcheva-GargovaJournal of Molecular Biology|January 21, 1994
On the location of linker DNA in the chromatin fiber. Studies with immobilized and soluble micrococcal nucleaseS H Leuba, J Zlatanova, K van HoldeThe Journal of Biological Chemistry|October 5, 1993
Preferential binding of histone H1 to four-way helical junction DNAP Varga-Weisz, K van Holde, J ZlatanovaExperimental Cell Research|July 1, 1988
Immunofluorescent localization of histone H10 in the nuclei of proliferating and differentiating Friend cellsT Banchev, L Srebreva, J Zlatanova, et al.Progress in Biophysics and Molecular Biology|December 7, 2000
Single molecule force spectroscopy in biology using the atomic force microscopeJ Zlatanova, S M Lindsay, S H LeubaPageof 7