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Nucleosome atomic force microscopy

Hizume K, Yoshimura SH, Maruyama H, Kim J, Wada H, Takeyasu K (2002) Chromatin reconstitution development of a salt-dialysis method monitored by nano-technology. Arch Histol Cytol 65 405 13 Hizume K, Yoshimura SH, Takeyasu K (2004) Atomic force microscopy demonstrates a critical role of DNA superhelicity in nucleosome dynamics. Cell Biochem Biophys 40 249—262 Hizume K, Yoshimura SH, Takeyasu K (2005) Linker histone HI per se can induce three-dimensional folding of chromatin fiber. Biochemistry 44 12978-12989 Hofmann WA, de Lanerolle P (2006) Nuclear actin to polymerize or not to polymerize. J Cell Biol 172 495-496... [Pg.25]

Sato MH, Ura K, Hohmura KI, Tokuimsu F, Yoshimura SH, Hanaoka F, Takeyasu K (1999) Atomic force microscopy sees nucleosome positioning and histone Hl-induced compaction in reconstituted chromatin. FEES Lett 452 267—271... [Pg.28]

Lohr, D., Bash, R., Wang, H., Yodh, J., and Lindsay, S. 2007. Using atomic force microscopy to study chromatin structure and nucleosome remodeling. Methods 41,333-341. [Pg.368]


See other pages where Nucleosome atomic force microscopy is mentioned: [Pg.27]    [Pg.52]    [Pg.244]    [Pg.267]    [Pg.277]    [Pg.96]    [Pg.182]    [Pg.183]    [Pg.434]   
See also in sourсe #XX -- [ Pg.182 ]




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