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Structural basis for orthogonal tRNA specificities of tyrosyl-tRNA synthetases for genetic code expansion
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- Kobayashi T.
- 東大院・理学系・生物化学
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- Nureki O.
- 東工大・生命理工・生命情報
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- Ishitani R.
- 東大院・理学系・生物化学
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- Yaremchuk Anna
- EMBL:NAS
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- Tukalo Michael
- EMBL:NAS
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- Cusack Stephen
- EMBL
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- Sakamoto K.
- 東大院・理学系・生物化学:理研
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- Yokoyama S.
- 東大院・理学系・生物化学:理研
Bibliographic Information
- Other Title
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- 遺伝暗号拡張に関わるチロシルtRNA合成酵素の直交性の構造的基盤
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Description
The archaeal/eukaryotic tyrosyl-tRNA synthetase (TyrRS)-tRNA(Tyr) pairs do not cross-react with their bacterial counterparts. This 'orthogonal' condition is essential for using the archaeal pair to expand the bacterial genetic code. In this study, the structure of the Methanococcus jannaschii TyrRS-tRNA(Tyr)-L-tyrosine complex, solved at a resolution of 1.95 A, reveals that this archaeal TyrRS strictly recognizes the C1-G72 base pair, whereas the bacterial TyrRS recognizes the G1-C72 in a different manner using different residues. These diverse tRNA recognition modes form the basis for the orthogonality. The common tRNA(Tyr) identity determinants (the discriminator, A73 and the anticodon residues) are also recognized in manners different from those of the bacterial TyrRS. Based on this finding, we created a mutant TyrRS that aminoacylates the amber suppressor tRNA with C34 65 times more efficiently than does the wild-type enzyme.
Journal
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- Seibutsu Butsuri
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Seibutsu Butsuri 43 (supplement), S94-, 2003
The Biophysical Society of Japan General Incorporated Association
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Keywords
- Models, Molecular
- Sequence Homology, Amino Acid
- Protein Conformation
- Methanococcus
- Thermus thermophilus
- Molecular Sequence Data
- Crystallography, X-Ray
- Substrate Specificity
- RNA, Transfer, Tyr
- Structure-Activity Relationship
- Genetic Code
- Structural Homology, Protein
- Tyrosine-tRNA Ligase
- Anticodon
- Mutagenesis, Site-Directed
- Nucleic Acid Conformation
- Tyrosine
- Amino Acid Sequence
- Base Pairing
Details 詳細情報について
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- CRID
- 1390282681514384640
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- NII Article ID
- 110001158009
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- ISSN
- 13474219
- 15459985
- 05824052
- 15459993
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- PubMed
- 12768199
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- Text Lang
- ja
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
- OpenAIRE