Keiichi Homma

Publication List Details

Period

1987 - 2006

Number

10

Co-Authors

Gene cluster analysis method reliably identifies horizontally transferred genes and reveals their involvement in operon formation (2006)

Homma, Keiichi, Fukuchi, Satoshi, Nakamura, Yoji, Gojobori, Takashi, Nishikawa, Ken

The formation mechanism of operons remains controversial despite the proposal of many models. Although acquisition of genes from other species, horizontal gene transfer, is considered to occur,...

Integrative Annotation of 21,037 Human Genes Validated by Full-Length cDNA Clones (2004)

Tadashi Imanishi, Takeshi Itoh, Yutaka Suzuki, Claire O'Donovan, Satoshi Fukuchi, Kanako O. Koyanagi, ...

An international team has systematically validated and annotated just over 21,000 human genes using full-length cDNA, thereby providing a valuable new resource for the human genetics community.

Integrative Annotation of 21,037 Human Genes Validated by Full-Length cDNA Clones (2004)

Tadashi Imanishi, Takeshi Itoh, Yutaka Suzuki, Claire O'Donovan, Satoshi Fukuchi, Kanako O. Koyanagi, ...

The human genome sequence defines our inherent biological potential; the realization of the biology encoded therein requires knowledge of the function of each gene. Currently, our knowledge in this...

GTOP: a database of protein structures predicted from genome sequences

Kawabata, Takeshi, Fukuchi, Satoshi, Homma, Keiichi, Ota, Motonori, Araki, Jiro, Ito, Takehiko, ...

Large-scale genome projects generate an unprecedented number of protein sequences, most of them are experimentally uncharacterized. Predicting the 3D structures of sequences provides important clues...

Integrative Annotation of 21,037 Human Genes Validated by Full-Length cDNA Clones

Imanishi, Tadashi, Itoh, Takeshi, Suzuki, Yutaka, O'Donovan, Claire, Fukuchi, Satoshi, Koyanagi, Kanako O, ...

The human genome sequence defines our inherent biological potential; the realization of the biology encoded therein requires knowledge of the function of each gene. Currently, our knowledge in this...

GTOP: a database of protein structures predicted from genome sequences

Kawabata, Takeshi, Fukuchi, Satoshi, Homma, Keiichi, Ota, Motonori, Araki, Jiro, Ito, Takehiko, ...

Large-scale genome projects generate an unprecedented number of protein sequences, most of them are experimentally uncharacterized. Predicting the 3D structures of sequences provides important clues...

Integrative Annotation of 21,037 Human Genes Validated by Full-Length cDNA Clones

Imanishi, Tadashi, Itoh, Takeshi, Suzuki, Yutaka, O'Donovan, Claire, Fukuchi, Satoshi, Koyanagi, Kanako O, ...

The human genome sequence defines our inherent biological potential; the realization of the biology encoded therein requires knowledge of the function of each gene. Currently, our knowledge in this...