发明申请
US20100056799A1 Stable Isotope-Labeled Aromatic Amino Acids, Method for Incorporating the Same in Target Protein and Method for NMR-Structural Analysis of Proteins
有权
稳定同位素标记的芳香族氨基酸,其在靶蛋白中的掺入方法和蛋白质的NMR结构分析方法
- 专利标题: Stable Isotope-Labeled Aromatic Amino Acids, Method for Incorporating the Same in Target Protein and Method for NMR-Structural Analysis of Proteins
- 专利标题(中): 稳定同位素标记的芳香族氨基酸,其在靶蛋白中的掺入方法和蛋白质的NMR结构分析方法
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申请号: US12559089申请日: 2009-09-14
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公开(公告)号: US20100056799A1公开(公告)日: 2010-03-04
- 发明人: Masatsune Kainosho , Tsutomu Terauchi
- 申请人: Masatsune Kainosho , Tsutomu Terauchi
- 申请人地址: JP Saitama
- 专利权人: JAPAN SCIENCE AND TECHNOLOGY AGENCY
- 当前专利权人: JAPAN SCIENCE AND TECHNOLOGY AGENCY
- 当前专利权人地址: JP Saitama
- 优先权: JP2003-373304 20031031
- 主分类号: C07D233/56
- IPC分类号: C07D233/56 ; C07C229/36 ; C07D209/20
摘要:
The present invention herein provides, for instance, a stable isotope-labeled phenylalanine wherein a carbon atom of the phenyl group linked to an amino acid residue is 13C, 2 to 4 carbon atoms of the remaining 5 carbon atoms constituting the phenyl group are 12C atoms to which deuterium atoms are bonded, and the remaining carbon atoms are 13C atoms to which hydrogen atoms are linked, and a stable isotope-labeled tyrosine wherein a carbon atom of the phenyl group linked to an amino acid residue is 13C, the carbon atom bonded to the hydroxyl group (OH group) of the phenyl group is 12C or 13C, 2 to 4 carbon atoms of the remaining 4 carbon atoms constituting the phenyl group are 12C atoms to which deuterium atoms are bonded, and the remaining carbon atoms are 13C atoms to which hydrogen atoms are linked. The stable isotope-labeled amino acid permits the elimination of such a conventional problem concerning the complexity of the NMR signals ascribed to aromatic rings, the complexity being a principal cause of making the NMR analysis difficult, encountered when using the conventional uniformly labeled amino acid residue. Moreover, the isotope-labeled amino acid likewise permits the substantial improvement of the sensitivity thereof to the NMR spectroscopic analysis.
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