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Dive into the research topics where Katsushi Yokoyama is active.

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Featured researches published by Katsushi Yokoyama.


Nucleic Acids Research | 2009

The DNA-recognition mode shared by archaeal feast/famine-regulatory proteins revealed by the DNA-binding specificities of TvFL3, FL10, FL11 and Ss-LrpB

Katsushi Yokoyama; Hideki Nogami; Mamiko Kabasawa; Sonomi Ebihara; Ai Shimowasa; Keiko Hashimoto; Tsuyoshi Kawashima; Sanae A. Ishijima; Masashi Suzuki

The DNA-binding mode of archaeal feast/famine-regulatory proteins (FFRPs), i.e. paralogs of the Esherichia coli leucine-responsive regulatory protein (Lrp), was studied. Using the method of systematic evolution of ligands by exponential enrichment (SELEX), optimal DNA duplexes for interacting with TvFL3, FL10, FL11 and Ss-LrpB were identified as TACGA[AAT/ATT]TCGTA, GTTCGA[AAT/ATT]TCGAAC, CCGAAA[AAT/ATT]TTTCGG and TTGCAA[AAT/ATT]TTGCAA, respectively, all fitting into the form abcdeWWWedcba. Here W is A or T, and e.g. a and a are bases complementary to each other. Apparent equilibrium binding constants of the FFRPs and various DNA duplexes were determined, thereby confirming the DNA-binding specificities of the FFRPs. It is likely that these FFRPs recognize DNA in essentially the same way, since their DNA-binding specificities were all explained by the same pattern of relationship between amino-acid positions and base positions to form chemical interactions. As predicted from this relationship, when Gly36 of TvFL3 was replaced by Thr, the b base in the optimal DNA duplex changed from A to T, and, when Thr36 of FL10 was replaced by Ser, the b base changed from T to G/A. DNA-binding characteristics of other archaeal FFRPs, Ptr1, Ptr2, Ss-Lrp and LysM, are also consistent with the relationship.


Fems Microbiology Reviews | 2006

Feast/famine regulatory proteins (FFRPs): Escherichia coli Lrp, AsnC and related archaeal transcription factors

Katsushi Yokoyama; Sanae A. Ishijima; Lester Clowney; Hideaki Koike; Hironori Aramaki; Chikako Tanaka; Kozo Makino; Masashi Suzuki


Structure | 2007

Feast/Famine Regulation by Transcription Factor FL11 for the Survival of the Hyperthermophilic Archaeon Pyrococcus OT3.

Katsushi Yokoyama; Sanae A. Ishijima; Hideaki Koike; Chitose Kurihara; Ai Shimowasa; Mamiko Kabasawa; Tsuyoshi Kawashima; Masashi Suzuki


Structure | 2007

A Structural Code for Discriminating between Transcription Signals Revealed by the Feast/Famine Regulatory Protein DM1 in Complex with Ligands

Hideyasu Okamura; Katsushi Yokoyama; Hideaki Koike; Mitsugu Yamada; Ai Shimowasa; Mamiko Kabasawa; Tsuyoshi Kawashima; Masashi Suzuki


Biological & Pharmaceutical Bulletin | 2008

Transcription regulation by feast/famine regulatory proteins, FFRPs, in archaea and eubacteria.

Tsuyoshi Kawashima; Hironori Aramaki; Tomoya Oyamada; Kozo Makino; Mitsugu Yamada; Hideyasu Okamura; Katsushi Yokoyama; Sanae A. Ishijima; Masashi Suzuki


Proceedings of the Japan Academy. Series B Physical and biological sciences | 2005

Binding of the feast/famine regulatory protein (FFRP) FL11 (pot0434017) to DNA in the "promoter to coding" region of gene fl11

Katsushi Yokoyama; Sonomi Ebihara; Tomoko Kikuchi; Masashi Suzuki


Proceedings of the Japan Academy. Series B Physical and biological sciences | 2005

Orthologous and paralogous FFRPs in E. coli and related proteobacteria

Katsushi Yokoyama; Masashi Suzuki


Proceedings of the Japan Academy. Series B Physical and biological sciences | 2005

Identification of proteins present in the archaeon Thermoplasma volcanium cultured in aerobic or anaerobic conditions

Tsuyoshi Kawashima; Katsushi Yokoyama; Sadaharu Higuchi; Masashi Suzuki


Proceedings of the Japan Academy. Series B Physical and biological sciences | 2005

GATC Methylation by Dam methylase in archaea: its roles and possible transcription regulation by an FFRP

Hideaki Koike; Katsushi Yokoyama; Tsuyoshi Kawashima; Tomoko Yamasaki; Shin-ichi Makino; Lester Clowney; Masashi Suzuki


Proceedings of the Japan Academy. Series B, Physical and biological sciences | 2006

A SELEX study of the DNA-binding specificity of archaeal FFRPs: 2. FL4 (pot1613368).

Katsushi Yokoyama; Michiko Ihara; Sonomi Ebihara; Masashi Suzuki

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Masashi Suzuki

National Institute of Advanced Industrial Science and Technology

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Kozo Makino

National Defense Academy of Japan

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Sonomi Ebihara

National Institute of Advanced Industrial Science and Technology

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Tsuyoshi Kawashima

National Institute of Advanced Industrial Science and Technology

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Hideaki Koike

National Institute of Advanced Industrial Science and Technology

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Sanae A. Ishijima

National Institute of Advanced Industrial Science and Technology

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Ai Shimowasa

National Institute of Advanced Industrial Science and Technology

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Mamiko Kabasawa

National Institute of Advanced Industrial Science and Technology

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Yusuke Yoshida

Yokohama City University

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Hideyasu Okamura

National Institute of Advanced Industrial Science and Technology

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