By Yu-Li Wang, D. Lansing Taylor and K.W. Jeon (Eds.)

ISBN-10: 012564129X

ISBN-13: 9780125641296

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Extra info for Fluorescence Microscopy of Living Cells in Culture Part A . Fluorescent Analogs, Labeling Cells, and Basic Microscopy

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McKanna, J. , and Cohen, S. (1979). J. Cell Biol. 81, 382-395. Haigler, H. , Maxfield, F. , Willingham, M. , and Pastan, 1. (1980). J. Biol. Chem. 255, 1239- 1241. Hanover, J. , and Dickson, R. B. (1985). In “Endocytosis” (I. Pastan and M. C. ), pp. 13 I - 16 1. Plenum, New York. , and Cuatreasas, P. (1979a). Biochem. Biophys. Res. Commun. 88,841 -846. , and Cuatrecasas, P. (1979b). Science 206, 1077- 1079. , and Conn, P. M. ( 1980). Proc. Acad. A. 77,6692-6695. Heiple, J. , and Taylor, D. L.

Selected examples of polypeptide toxins that have been exploited for the molecular characterization of several ion receptors and channels are discussed below. Receptor Toxins 1. FLUORESCENT a-BUNGAROTOXIN: A PROBEFOR THE NICOTINIC ACETYLCHOLINE RECEPTOR Some of the most important fluorescent toxin probes have developed from the discovery of isolated polypeptide toxins from venomous snakes (23, 24). Of these, the best characterized and most widely used toxin for cellular neurobiology has been a-bungarotoxin.

G. (1982). J. Biol. Chem. 257,547 1 - 5475. Sklar, L. , Finney, D. , Oades, Z. , Jesaitis, A. , Painter, R. , and Cochrane, C. G. (1984). J. Eiol. Chem. 259,5661 -5669. Stryer, L. (1978). Annu. Biochem. 47,819-846. The, T. , and Feltkamp, T. E. W. (1970a). Immunology18, 865-873. The, T. , and Feltkamp, T. E. W. (1970b). Immunology 18, 875-881. , and Maxfield, F. R. (1982). Cell23,643-651. , Keith, C. , and Maxfield, F. R. (1983). J. Cell Biol. 97, 1762- 1776. van Renswoude, J. , Bridges, K. , Harford, J.

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Fluorescence Microscopy of Living Cells in Culture Part A . Fluorescent Analogs, Labeling Cells, and Basic Microscopy by Yu-Li Wang, D. Lansing Taylor and K.W. Jeon (Eds.)


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