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Nucleic Acids Research
|
November 6, 2010
YaeJ is a novel ribosome-associated protein in Escherichia coli that can hydrolyze peptidyl-tRNA on stalled ribosomes
Yoshihiro Handa, Noriyuki Inaho, Nobukazu Nameki
Gene
|
December 17, 2005
Probing the secondary structure of salmon SmaI SINE RNA
Hiroko Kawagoe-Takaki, Nobukazu Nameki, Masaki Kajikawa, et al.
Biochimie
|
December 3, 2014
Ribosome rescue systems in bacteria
Hyouta Himeno, Nobukazu Nameki, Daisuke Kurita, et al.
Cell
|
May 7, 2003
Alternative tertiary structure of tRNA for recognition by a posttranscriptional modification enzyme
Ryuichiro Ishitani, Osamu Nureki, Nobukazu Nameki, et al.
Journal of Biochemistry
|
April 24, 2023
Structural insights into recognition of SL4, the UUCG stem-loop, of human U1 snRNA by the ubiquitin-like domain, including the C-terminal tail in the SF3A1 subunit of U2 snRNP
Nobukazu Nameki, Shin-Ichi Terawaki, Masayuki Takizawa, et al.
FEBS Open Bio
|
May 8, 2013
Inhibitory effects of choline-O-sulfate on amyloid formation of human islet amyloid polypeptide
Mamoru Hagihara, Ayaka Takei, Takeshi Ishii, et al.
Nucleic Acids Research
|
December 11, 2013
Identification of residues required for stalled-ribosome rescue in the codon-independent release factor YaeJ
Hiroyuki Kogure, Yoshihiro Handa, Masahiro Nagata, et al.
Nucleic Acids Research
|
January 2, 2016
Multisite-specific archaeosine tRNA-guanine transglycosylase (ArcTGT) from Thermoplasma acidophilum, a thermo-acidophilic archaeon
Takuya Kawamura, Akira Hirata, Satoshi Ohno, et al.
Protein Science : a Publication of the Protein Society
|
September 29, 2022
Structural basis for the interaction between the first SURP domain of the SF3A1 subunit in U2 snRNP and the human splicing factor SF1
Nobukazu Nameki, Masayuki Takizawa, Takayuki Suzuki, et al.
Communications Biology
|
March 9, 2021
A stalled-ribosome rescue factor Pth3 is required for mitochondrial translation against antibiotics in Saccharomyces cerevisiae
Soichiro Hoshino, Ryohei Kanemura, Daisuke Kurita, et al.
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of 3
Search research articles
Search
Showing results (1-10 of 24) with videos related to
Sort By:
Page
of 3
Nucleic Acids Research
|
November 6, 2010
YaeJ is a novel ribosome-associated protein in Escherichia coli that can hydrolyze peptidyl-tRNA on stalled ribosomes
Yoshihiro Handa, Noriyuki Inaho, Nobukazu Nameki
Gene
|
December 17, 2005
Probing the secondary structure of salmon SmaI SINE RNA
Hiroko Kawagoe-Takaki, Nobukazu Nameki, Masaki Kajikawa, et al.
Biochimie
|
December 3, 2014
Ribosome rescue systems in bacteria
Hyouta Himeno, Nobukazu Nameki, Daisuke Kurita, et al.
Cell
|
May 7, 2003
Alternative tertiary structure of tRNA for recognition by a posttranscriptional modification enzyme
Ryuichiro Ishitani, Osamu Nureki, Nobukazu Nameki, et al.
Journal of Biochemistry
|
April 24, 2023
Structural insights into recognition of SL4, the UUCG stem-loop, of human U1 snRNA by the ubiquitin-like domain, including the C-terminal tail in the SF3A1 subunit of U2 snRNP
Nobukazu Nameki, Shin-Ichi Terawaki, Masayuki Takizawa, et al.
FEBS Open Bio
|
May 8, 2013
Inhibitory effects of choline-O-sulfate on amyloid formation of human islet amyloid polypeptide
Mamoru Hagihara, Ayaka Takei, Takeshi Ishii, et al.
Nucleic Acids Research
|
December 11, 2013
Identification of residues required for stalled-ribosome rescue in the codon-independent release factor YaeJ
Hiroyuki Kogure, Yoshihiro Handa, Masahiro Nagata, et al.
Nucleic Acids Research
|
January 2, 2016
Multisite-specific archaeosine tRNA-guanine transglycosylase (ArcTGT) from Thermoplasma acidophilum, a thermo-acidophilic archaeon
Takuya Kawamura, Akira Hirata, Satoshi Ohno, et al.
Protein Science : a Publication of the Protein Society
|
September 29, 2022
Structural basis for the interaction between the first SURP domain of the SF3A1 subunit in U2 snRNP and the human splicing factor SF1
Nobukazu Nameki, Masayuki Takizawa, Takayuki Suzuki, et al.
Communications Biology
|
March 9, 2021
A stalled-ribosome rescue factor Pth3 is required for mitochondrial translation against antibiotics in Saccharomyces cerevisiae
Soichiro Hoshino, Ryohei Kanemura, Daisuke Kurita, et al.
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of 3