High-resolution multi-dimensional NMR spectroscopy of proteins in human cells
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Inomata, Kohsuke
[1
,2
]
Ohno, Ayako
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Kyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Ohno, Ayako
[1
]
Tochio, Hidehito
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Kyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
JST, CREST, Kawaguchi, Saitama 3320012, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Tochio, Hidehito
[1
,2
]
Isogai, Shin
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Kyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Isogai, Shin
[1
]
Tenno, Takeshi
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JST, CREST, Kawaguchi, Saitama 3320012, Japan
Kobe Univ, Grad Sch Med, Div Struct Biol, Chuo Ku, Kobe, Hyogo 6500017, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Tenno, Takeshi
[2
,4
]
Nakase, Ikuhiko
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Kyoto Univ, Inst Chem Res, Kyoto 6110011, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Nakase, Ikuhiko
[5
]
Takeuchi, Toshihide
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Kyoto Univ, Inst Chem Res, Kyoto 6110011, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Takeuchi, Toshihide
[5
]
Futaki, Shiroh
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JST, SORST, Kawaguchi, Saitama 3320012, Japan
Kyoto Univ, Inst Chem Res, Kyoto 6110011, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Futaki, Shiroh
[3
,5
]
Ito, Yutaka
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JST, CREST, Kawaguchi, Saitama 3320012, Japan
Tokyo Metropolitan Univ, Dept Chem, Tokyo 1920397, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Ito, Yutaka
[2
,6
]
Hiroaki, Hidekazu
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JST, CREST, Kawaguchi, Saitama 3320012, Japan
Kobe Univ, Grad Sch Med, Div Struct Biol, Chuo Ku, Kobe, Hyogo 6500017, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Hiroaki, Hidekazu
[2
,4
]
Shirakawa, Masahiro
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Kyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
JST, CREST, Kawaguchi, Saitama 3320012, Japan
RIKEN, Yokohama Inst, Yokohama, Kanagawa 2300045, JapanKyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
Shirakawa, Masahiro
[1
,2
,7
]
机构:
[1] Kyoto Univ, Grad Sch Engn, Dept Mol Engn, Nishikyo Ku, Kyoto 6158510, Japan
[2] JST, CREST, Kawaguchi, Saitama 3320012, Japan
[3] JST, SORST, Kawaguchi, Saitama 3320012, Japan
[4] Kobe Univ, Grad Sch Med, Div Struct Biol, Chuo Ku, Kobe, Hyogo 6500017, Japan
[5] Kyoto Univ, Inst Chem Res, Kyoto 6110011, Japan
[6] Tokyo Metropolitan Univ, Dept Chem, Tokyo 1920397, Japan
[7] RIKEN, Yokohama Inst, Yokohama, Kanagawa 2300045, Japan
In-cell NMR is an isotope-aided multi-dimensional NMR technique that enables observations of conformations and functions of proteins in living cells at the atomic level(1). This method has been successfully applied to proteins overexpressed in bacteria, providing information on protein-ligand interactions(2) and conformations(3,4). However, the application of in-cell NMR to eukaryotic cells has been limited to Xenopus laevis oocytes(5-7). Wider application of the technique is hampered by inefficient delivery of isotope-labelled proteins into eukaryote somatic cells. Here we describe a method to obtain high-resolution two-dimensional (2D) heteronuclear NMR spectra of proteins inside living human cells. Proteins were delivered to the cytosol by the pyrenebutyrate-mediated action of cell-penetrating peptides(8) linked covalently to the proteins. The proteins were subsequently released from cell-penetrating peptides by endogenous enzymatic activity or by autonomous reductive cleavage. The heteronuclear 2D spectra of three different proteins inside human cells demonstrate the broad application of this technique to studying interactions and protein processing. The in-cell NMR spectra of FKBP12 (also known as FKBP1A) show the formation of specific complexes between the protein and extracellularly administered immunosuppressants, demonstrating the utility of this technique in drug screening programs. Moreover, in-cell NMRspectroscopy demonstrates that ubiquitin has much higher hydrogen exchange rates in the intracellular environment, possibly due to multiple interactions with endogenous proteins.