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Featured researches published by Yoshikazu Ishida.


Journal of Bioscience and Bioengineering | 2001

Development of a novel method for operating magnetic particles, Magtration Technology, and its use for automating nucleic acid purification

Kimimichi Obata; Osamu Segawa; Mitsuru Yakabe; Yoshikazu Ishida; Toshihiro Kuroita; Katsunori Ikeda; Bunsei Kawakami; Yoshihisa Kawamura; Masafumi Yohda; Tadashi Matsunaga; Hideji Tajima

Magnetic particles are useful for simple and efficient nucleic acid extraction. To achieve fully automated nucleic acid extraction and purification using magnetic particles, a new method for operating magnetic particles, Magtration Technology, was developed. In this method, magnetic separation is performed in a specially designed disposable tip. This enables high recovery of magnetic particles with high reproducibility. The features of this technology are (i) a simple mechanism for process control and (ii) flexible software to enable adaptation to commercially available reagents. Automated instruments based on Magtration Technology were developed and used for nucleic acid extraction. Total DNA, total RNA and plasmids were purified by Magtration Technology at an efficiency comparable to that of manual methods.


Genetic Analysis: Biomolecular Engineering | 1993

Generation of high-density DNA markers from yeast artificial chromosome DNA by single unique primer-polymerase chain reaction

Shinji Hadano; Yoshikazu Ishida; Gillian P. Bates; Tomiko Nagayama; Ichiro Kanazawa; Hans Lehrach; Joh-E Ikeda

We have developed a method for the whole sequence amplification of yeast artificial chromosome (YAC) DNA excised from preparative pulsed-field gel electrophoresis using single unique primer-polymerase chain reaction procedures. We used seven contiguous YAC clones, which span 2 Mbp of the Huntington disease gene region on 4p16.3, to amplify the YAC DNAs. The average size of the amplified DNA was approximately 300 bp long, and 12 DNA markers located on the YAC clones positively hybridized with these amplified products, implying that the sequences of the YAC clones were comprehensively amplified by our procedures. These amplified YAC DNAs greatly facilitate the characterization of YAC clones, leading to the detailed analysis of the defined chromosomal region.


Archive | 1996

Extraction and purification of rna

Katsunori Ikeda; Yoshikazu Ishida; Hideki Kamimura; Fumikiyo Kawakami; Yoshihisa Kawamura; 秀喜 上村; 川上 文清; 川村 良久; 勝徳 池田; 石田 由和


Archive | 1996

Extraction and purification of plasmid dna

Katsunori Ikeda; Yoshikazu Ishida; Hideki Kamimura; Fumikiyo Kawakami; Yoshihisa Kawamura; 秀喜 上村; 川上 文清; 川村 良久; 勝徳 池田; 石田 由和


Archive | 2002

Compositions for enhancing DNA synthesis, DNA polymerase-related factors and utilization thereof

Masao Kitabayashi; Toshihiro Kuroita; Yoshikazu Ishida; Hideyuki Komatsubara; Yoshiaki Nishiya; Masanori Oka; Yoshihisa Kawamura; Tadayuki Imanaka


Archive | 2001

Varied heat resistant dna polymerase

Tadayuki Imanaka; Yoshikazu Ishida; Fumikiyo Kawakami; Yoshihisa Kawamura; Masao Kitabayashi; Hidesuke Komatsubara; Toshihiro Kuroita; Yoshiaki Nishiya; 忠行 今中; 北林 雅夫; 小松原 秀介; 川上 文清; 川村 良久; 石田 由和; 西矢 芳昭; 黒板 敏弘


Archive | 2002

DNA SYNTHESIS PROMOTERS, DNA POLYMERASE-ASSOCIATED FACTORS AND UTILIZATION THEREOF

Masao Kitabayashi; Toshihiro Kuroita; Yoshikazu Ishida; Hideyuki Komatsubara; Yoshiaki Nishiya; Masanori Oka; Yoshihisa Kawamura; Tadayuki Imanaka


Archive | 2001

Modified thermostable DNA polymerase

Toshihiro Kuroita; Masao Kitabayashi; Yoshikazu Ishida; Hideyuki Komatsubara; Yoshiaki Nishiya; Bunsei Kawakami; Yoshihisa Kawamura; Tadayuki Imanaka


DNA Research | 1998

The primary structure and genomic organization of five novel transcripts located close to the Huntington's disease gene on human chromosome 4p16.3.

Shinji Hadano; Yoshikazu Ishida; Joh-E Ikeda


DNA Research | 1996

Transcript Map of the Human Chromosome 4p16.3 Consisting of 627 cDNA Clones Derived from 1 Mb of the Huntington's Disease Locus

Shinji Hadano; Yoshikazu Ishida; Hitoshi Tomiyasu; Kenji Yamamoto; Gillian P. Bates; Joh-E Ikeda

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