Sumiko Araki
Kyoto University
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Publication
Featured researches published by Sumiko Araki.
Nucleic Acids Research | 2007
Kohji Hizume; Sumiko Araki; Kenichi Yoshikawa; Kunio Takeyasu
TopoisomeraseII (Topo II) is a major component of chromosomal scaffolds and essential for mitotic chromosome condensation, but the mechanism of this action remains unknown. Here, we used an in vitro chromatin reconstitution system in combination with atomic force and fluorescence microscopic analyses to determine how Topo II affects chromosomal structure. Topo II bound to bare DNA and clamped the two DNA strands together, even in the absence of ATP. In addition, Topo II promoted chromatin compaction in a manner dependent on histone H1 but independent of ATP. Histone H1-induced 30-nm chromatin fibers were converted into a large complex by Topo II. Fluorescence microscopic analysis of the Brownian motion of chromatin stained with 4′,6-diamidino-2-phenylindole showed that the reconstituted chromatin became larger following the addition of Topo II in the presence but not the absence of histone H1. Based on these findings, we propose that chromatin packing is triggered by histone H1-dependent, Topo II-mediated clamping of DNA strands.
Ultramicroscopy | 2009
Kohji Hizume; Tonau Nakai; Sumiko Araki; Eloise Prieto; Kenichi Yoshikawa; Kunio Takeyasu
In order to reveal the roles of histone tails in the formation of higher-order chromatin structures, we employed atomic force microscopy (AFM), and an in vitro reconstitution system to examine the properties of reconstituted chromatin composed of tail-less histones and a long DNA (106-kb plasmid) template. The tail-less nucleosomes did not aggregate at high salt concentrations or with an excess amount of core histones, in contrast with the behavior of nucleosomal arrays composed of nucleosomes containing normal, N-terminal tails. Analysis of our nucleosome distributions reveals that the attractive interaction between tail-less nucleosomes is weakened. Addition of linker histone H1 into the tail-less nucleosomal array failed to promote the formation of 30nm chromatin fibers that are usually formed in the normal nucleosomal array. These results demonstrate that the attractive interaction between nucleosomes via histone tails plays a critical role in the formation of the uniform 30-nm chromatin fiber.
Journal of Bacteriology | 2008
Ning Chen; Anatoly Zinchenko; Yuko Yoshikawa; Sumiko Araki; Shun Adachi; Mitsuyoshi Yamazoe; Sota Hiraga; Kenichi Yoshikawa
Fluorescence microscopic observation of individual T4 DNA molecules revealed that the MukBEF complex (bacterial condensin) and its subunit, the MukB (a member of the SMC [structural maintenance of chromosomes] superfamily) homodimer, of Escherichia coli markedly shrunk large DNA molecules in the presence of hydrolyzable ATP. In contrast, in the presence of ADP or ATP-gammaS, the conformation of DNA was almost not changed. This suggests that the ATPase activity of subunit MukB is essential for shrinking large DNA molecules. Stretching experiments on the shrunken DNA molecules in the presence of ATP and MukBEF indicated a cross-bridging interaction between DNA molecules.
Journal of Physical Chemistry B | 2007
Anatoly Zinchenko; Takahiro Sakaue; Sumiko Araki; Kenichi Yoshikawa; Damien Baigl
Journal of Physical Chemistry B | 2007
Tsutomu Hamada; Yoko Miura; Ken-ichi Ishii; Sumiko Araki; Kenichi Yoshikawa; Mun'delanji C. Vestergaard; Masahiro Takagi
Biophysical Journal | 2006
Yuko Yoshikawa; Kohji Hizume; Yoshiko Oda; Kunio Takeyasu; Sumiko Araki; Kenichi Yoshikawa
Chemical Physics Letters | 2006
Sumiko Araki; Tonau Nakai; Kohji Hizume; Kunio Takeyasu; Kenichi Yoshikawa
Journal of the American Chemical Society | 2006
Shigeyuki Masaoka; Daisuke Tanaka; Hiroyuki Kitahata; Sumiko Araki; Ryotaro Matsuda; Kenichi Yoshikawa; Kenichi Kato; Masaki Takata; Susumu Kitagawa
Chemical Physics Letters | 2009
Sumiko Araki; Kohji Hizume; Takafumi Iwaki; Kunio Takeyasu; Kenichi Yoshikawa
Archives of Histology and Cytology | 2011
Kohji Hizume; Sumiko Araki; Kosuke Hata; Eloise Prieto; Tapas K. Kundu; Kenichi Yoshikawa; Kunio Takeyasu