TY - JOUR
T1 - 3-(3'-Fluorenyl-9'-oxo)-L-alanine
T2 - A novel photoreactive conformationally constrained amino acid
AU - Han, Y.
AU - Bisello, A.
AU - Nakamoto, C.
AU - Rosenblatt, M.
AU - Chorev, Michael
PY - 2000
Y1 - 2000
N2 - Photoaffinity scanning of the ligand-G-protein-coupled receptor bimolecular interface is a direct approach to mapping the interactions of ligands and receptors. Such studies are an important first step toward generating an experimentally based model of the ligand-receptor complex. The synthesis and spectroscopic characterization of Boc-3-(3'-fluorenyl-9'-oxo)- L-alanine and 9-fluorenone-3-carboxylic acid are described. Incorporation of these two photophores into the parathyroid hormone (PTH) molecule yields potent agonists. These photoreactive analogs cross-link specifically with the recombinant human PTH1 receptor stably expressed in human embryonic kidney cells. The availability of the 9-fluorenone (a conformationally constrained derivative of benzophenone, the abundantly used photophore) for photoaffinity scanning provides an important tool to probe the effect of conformational flexibility of the photophore on the selection of the cross-linking site in the macromolecular acceptor.
AB - Photoaffinity scanning of the ligand-G-protein-coupled receptor bimolecular interface is a direct approach to mapping the interactions of ligands and receptors. Such studies are an important first step toward generating an experimentally based model of the ligand-receptor complex. The synthesis and spectroscopic characterization of Boc-3-(3'-fluorenyl-9'-oxo)- L-alanine and 9-fluorenone-3-carboxylic acid are described. Incorporation of these two photophores into the parathyroid hormone (PTH) molecule yields potent agonists. These photoreactive analogs cross-link specifically with the recombinant human PTH1 receptor stably expressed in human embryonic kidney cells. The availability of the 9-fluorenone (a conformationally constrained derivative of benzophenone, the abundantly used photophore) for photoaffinity scanning provides an important tool to probe the effect of conformational flexibility of the photophore on the selection of the cross-linking site in the macromolecular acceptor.
KW - 3-(3'-fluorenyl-9'-oxo)-L-alanine
KW - Amino acid synthesis
KW - Arylketones
KW - Human PTH1 receptor
KW - Parathyroid hormone
KW - Photoaffinity labeling
KW - Photoreactive amino acid
UR - https://www.scopus.com/pages/publications/0033998541
U2 - 10.1034/j.1399-3011.2000.00175.x
DO - 10.1034/j.1399-3011.2000.00175.x
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C2 - 10727105
AN - SCOPUS:0033998541
SN - 1397-002X
VL - 55
SP - 230
EP - 239
JO - Journal of Peptide Research
JF - Journal of Peptide Research
IS - 3
ER -