Yasuhiko Miwa

Trans-Translation is Involved in the CcpA-Dependent Tagging and Degradation of TreP in Bacillus subtilis (2009)

Ujiie, Hiromi, Matsutani, Tomoko, Tomatsu, Hisashi, Fujihara, Ai, Ushida, Chisato, Miwa, Yasuhiko, ...

TreP [trehalose-permease (phosphotransferase system (PTS) trehalose-specific enzyme IIBC component)] is one of the target proteins of tmRNA-mediated trans-translation in Bacillus subtilis [Fujihara...

An immunofluorescent study on anti-synovial tissue antibody in the body fluid from patients with rheumatoid arthritis (2007)

Ogawa, Katsuo, Tsuji, Takao, Namba, Masayoshi, Hayama, Kazuo, Okamoto, Tsukasa, Miwa, Yasuhiko

There is as yet no plausible and convincing explanation for the etiology of rheumatoid arthritis. The authors investigated anti-synovial tissue antibody in the body fluid of rheumatoid arthritis by...

Dynamics of rheumatoid joint (2007)

Kodama, Toshio, Narasaki, Kazuyoshi, Ogino, Yasuo, Takatori, Masaaki, Oka, Yoshiki, Hiramatsu, Hidehiko, ...

In the present communication the recent works done by the Rheumatism Research Group of Department of Orthopedic Surgery, Okayama University, are described. The principal findings may briefly be...

Combined transcriptome and proteome analysis as a powerful approach to study genes under glucose repression in Bacillus subtilis (2001)

Yoshida, Ken-ichi, Kobayashi, Kazuo, Miwa, Yasuhiko, Kang, Choong-Min, Matsunaga, Masayuki, Yamaguchi, Hirotake, ...

We used 2D protein gel electrophoresis and DNA microarray technologies to systematically analyze genes under glucose repression in Bacillus subtilis. In particular, we focused on genes expressed...

Evaluation and characterization of catabolite-responsive elements (cre) of Bacillus subtilis (2000)

Miwa, Yasuhiko, Nakata, Atsuo, Ogiwara, Atsushi, Yamamoto, Mami, Fujita, Yasutaro

A global mechanism of catabolite repression of the genus Bacillus comprises negative regulation exerted through the binding of the CcpA protein to the catabolite-responsive elements (cres) of the...

Cloning and Sequencing of a 36-kb Region of the Bacillus subtilis Genome between the gnt and iol Operons (1995)

Yoshida, Ken-ichi, Seki, Shin, Fujimura, Miyuki, Miwa, Yasuhiko, Fujita, Yasutaro

Within the framework of an international project for the sequencing of the entire Bacillus subtilis genome, a 36-kb chromosome segment, which covers the region between the gnt and iol operons, has...

Promoter-Independent Catabolite Repression of the Bacillus subtilis gnt Operon (1993)

Miwa, Yasuhiko, Fujita, Yasutaro

The mechanism underlying catabolite repression in Bacillus species remains unknown. A recent study of the promoter-independent catabolite repression of the gnt operon implicated a consensus sequence...

Determination of the cis sequence involved in catabolite repression of the Bacillus subtilis gnt operon; implication of a consensus sequence in catabolite repression in the genus Bacillus (1990)

Miwa, Yasuhiko, Fujita, Yasutaro

The mechanism underlying catabolite repression in Bacillus species remains unsolved. The gluconate (gnt) operon of Bacillus subtilis is one of the catabolic operons which is under catabolite...

Combined transcriptome and proteome analysis as a powerful approach to study genes under glucose repression in Bacillus subtilis

Yoshida, Ken-ichi, Kobayashi, Kazuo, Miwa, Yasuhiko, Kang, Choong-Min, Matsunaga, Masayuki, Yamaguchi, Hirotake, ...

We used 2D protein gel electrophoresis and DNA microarray technologies to systematically analyze genes under glucose repression in Bacillus subtilis. In particular, we focused on genes expressed...

Involvement of Two Distinct Catabolite-Responsive Elements in Catabolite Repression of the Bacillus subtilis myo-Inositol (iol) Operon

Miwa, Yasuhiko, Fujita, Yasutaro

The Bacillus subtilis inositol operon (iolABCDEFGHIJ) is involved in myo-inositol catabolism. Glucose repression of the iol operon induced by inositol is exerted through catabolite repression...

Evaluation and characterization of catabolite-responsive elements (cre) of Bacillus subtilis

Miwa, Yasuhiko, Nakata, Atsuo, Ogiwara, Atsushi, Yamamoto, Mami, Fujita, Yasutaro

A global mechanism of catabolite repression of the genus Bacillus comprises negative regulation exerted through the binding of the CcpA protein to the catabolite-responsive elements (cres) of the...

Identification and Expression of the Bacillus subtilis Fructose-1,6-Bisphosphatase Gene (fbp)

Fujita, Yasutaro, Yoshida, Ken-Ichi, Miwa, Yasuhiko, Yanai, Nobuo, Nagakawa, Eishi, Kasahara, Yasuhiro

The Bacillus subtilis fbp gene encoding fructose-1,6-bisphosphatase (FBPase) was originally identified as yydE. The fbp gene was expressed at a fairly constant level in cells undergoing glycolysis or...

Combined transcriptome and proteome analysis as a powerful approach to study genes under glucose repression in Bacillus subtilis

Yoshida, Ken-ichi, Kobayashi, Kazuo, Miwa, Yasuhiko, Kang, Choong-Min, Matsunaga, Masayuki, Yamaguchi, Hirotake, ...

We used 2D protein gel electrophoresis and DNA microarray technologies to systematically analyze genes under glucose repression in Bacillus subtilis. In particular, we focused on genes expressed...

Involvement of Two Distinct Catabolite-Responsive Elements in Catabolite Repression of the Bacillus subtilis myo-Inositol (iol) Operon

Miwa, Yasuhiko, Fujita, Yasutaro

The Bacillus subtilis inositol operon (iolABCDEFGHIJ) is involved in myo-inositol catabolism. Glucose repression of the iol operon induced by inositol is exerted through catabolite repression...

Evaluation and characterization of catabolite-responsive elements (cre) of Bacillus subtilis

Miwa, Yasuhiko, Nakata, Atsuo, Ogiwara, Atsushi, Yamamoto, Mami, Fujita, Yasutaro

A global mechanism of catabolite repression of the genus Bacillus comprises negative regulation exerted through the binding of the CcpA protein to the catabolite-responsive elements (cres) of the...

Identification and Expression of the Bacillus subtilis Fructose-1,6-Bisphosphatase Gene (fbp)

Fujita, Yasutaro, Yoshida, Ken-Ichi, Miwa, Yasuhiko, Yanai, Nobuo, Nagakawa, Eishi, Kasahara, Yasuhiro

The Bacillus subtilis fbp gene encoding fructose-1,6-bisphosphatase (FBPase) was originally identified as yydE. The fbp gene was expressed at a fairly constant level in cells undergoing glycolysis or...