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Dive into the research topics where Hisayuki Ishikura is active.

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Featured researches published by Hisayuki Ishikura.


Biochimica et Biophysica Acta | 1992

Nucleotide sequences of serine tRNAs from Bacillus subtilis

Jitsuhiro Matsugi; Hong-Ti Jia; Katsutoshi Murao; Hisayuki Ishikura

Three B. subitilis serine tRNAs were sequenced including modified nucleosides. All the serine tRNAs contained 1-methyl-adenosine in the D-loop. As other characteristic modified nucleosides, 5-methoxyuridine was found in the first letter of the anticodon in the tRNA(UGA).


Biochimica et Biophysica Acta | 1975

Identification of a modified nucleoside in Escherichia coli tRNA1Ser as 2'-O-methylcytidine.

Yuko Yamada; Hisayuki Ishikura

Abstract A modified nucleoside located in the anticodon loop of Escherichia coli tRNASer1 was identified as 2′-O- methylcytidine .


Journal of Molecular Evolution | 1986

Enzymatic Synthesis and Some Properties of a Model Primitive tRNA

Masataka Kinjo; Tsunemi Hasegawa; Kei Nagano; Hisayuki Ishikura; Masahiro Ishigami

SummaryA model primitive tRNA with the nucleotide sequence GGCCAAAAAAAGGCCp was synthesized using T4 RNA ligase. The nucleotide sequence of this newly synthesized oligonucleotide was confirmed by ladder analysis of several enzymatic digestion products. The secondary structure of the oligonucleotide was examined by comparison of the products of its digestion by single- and double-strand-specific nucleases with those of the digestion of the intermediate oligonucleotide GGCCAAAAAAAOH. The results indicated that the two GGCC segments of the 5′ and 3′ ends of the model tRNA may form base pairs in solution. The same conclusion was derived from the result of affinitycolumn chromatography of the model oligonucleotide. When32pGGCCAAAAAAAGGCCOH was passed through a poly(U)-agarose column, about 70% of the applied sample bound to the poly(U)-agarose. In contrast, when the model oligonucleotide was passed through a poly(C)-agarose column, only 15% of the sample bound to the poly(C)-agarose. These results indicate that the newly synthesized oligonucleotide adopts a hairpin structure in solution. Two aspects of a potential biological activity of the synthetic model tRNA were examined. It was found that the oligonucleotide can bind to poly(U)-programmed 30S ribosomes and is recognized by Qβ replicase as a template for RNA synthesis.


Biochemical and Biophysical Research Communications | 1989

Discriminator base of tRNAAsp is involved in amino acid acceptor activity

Tsunemi Hasegawa; Hyouta Himeno; Hisayuki Ishikura; Mikio Shimizu


Journal of Biochemistry | 1958

THE STRUCTURE OF CYTOCHROME C

Shigeki Minakami; Koiti Titani; Hisayuki Ishikura


Nucleic Acids Research | 1981

The nucleotide sequence of 5S rRNA from Mycoplasma capricolum

Hiroshi Hori; Makoto Sawada; Syozo Osawa; Katsutoshi Murao; Hisayuki Ishikura


Journal of Biochemistry | 1996

Characterization of a B. subtilis Minor Isoleucine tRNA Deduced from tDNA Having a Methionine Anticodon CAT

Jitsuhiro Matsugi; Katsutoshi Murao; Hisayuki Ishikura


Journal of Biochemistry | 1998

EFFECT OF B. SUBTILIS TRNATRP ON READTHROUGH RATE AT AN OPAL UGA CODON

Jitsuhiro Matsugi; Katsutoshi Murao; Hisayuki Ishikura


Nucleic Acids Research | 1981

5-(Carboxymethylaminomethyl)-2-thiouridine, a new modified nucleoside found at the first letter position of the anticodon

Yuko Yamada; Katsutoshi Murao; Hisayuki Ishikura


Biochimica et Biophysica Acta | 2005

Bacillus subtilis tRNAPro with the anticodon mo5UGG can recognize the codon CCC

Yuko Yamada; Jitsuhiro Matsugi; Hisayuki Ishikura; Katsutoshi Murao

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Koiti Titani

Fujita Health University

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Kei Nagano

Tokyo Medical and Dental University

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