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Calcium-Binding Protein Protocols Calcium-Binding Protein Protocols

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S-100 <strong>Protein</strong> Interacting Drugs 337<br />

3. Endo, T., Tanaka, T., Isobe, T., Kasai, H., Okuyama, T., and Hidaka, H. (1981)<br />

<strong>Calcium</strong>-dependent affinity chromatography of S-100 and calmodulin on calmodulin<br />

antagonist-coupled Sepharose. J. Biol. Chem. 256, 12,485–12,489.<br />

4. Vogel, H. J, Lindahl, L., and Thulin, E. (1983) <strong>Calcium</strong>-dependent hydrophobic<br />

interaction chromatography of calmodulin and related calcium-binding proteins.<br />

FEBS Lett. 157, 241–246.<br />

5. Williams, A. and Ibrahim, I. A. (1981) A mechanism involving cyclic tau-tomers<br />

for the reaction with nucleophiles of the water-soluble peptide coupling reagent<br />

1-ethyl-3-(dimethyl amminopropyl) carbodiimide (EDC). J. Am. Chem. Soc. 103,<br />

7090–7095.<br />

6. Gilles, M. A., Hudson, A. Q., and Borders, C. L. (1990) Stability of water-soluble<br />

carbodiimides in aqueous solution. Anal. Biochem. 184, 244–248.<br />

7. Sundberg, L. and Porath, J. (1974) Preparation of adsorbents for biospecific affinity<br />

chromatography. Attachment of group-containing ligands to insoluble polymers<br />

by means of bifuctional oxiranes. J. Chromatogr. 90, 87–98.<br />

8. Silvanovich, M. P. and Hill, R. D. (1976) Affinity chromatography of cereal alphaamylase.<br />

Anal. Biochem. 73, 430–433.<br />

9. Uy, R. and Wold, F. (1977) 1,4-Butanediol diglycidyl ether coupling of carbohydrates<br />

to Sepharose: affinity adsorbents for lectins and glycosidases. Anal. Biochem.<br />

81, 98–107.<br />

10. Hermanson, G. T., Mallia, A. K., and Smith, P. K. (1992) Immobilized Affinity Ligand<br />

Tschniques, (Product #22230), Academic, California.<br />

11. Dean, P. D. G., Johnson, W. S., and Middle, F. A., eds. (1985) Affinity Chromatography:<br />

A Practical Approach. IRL, Oxford.<br />

12. Oyama, Y., Shishibori, T., Yamashita, K., Naya, T., Nakagiri, S., Maeta, H., and<br />

Kobayashi, R. (1997) Two distinct anti-allergic drugs, amlexanox and cromolyn,<br />

bind to the same kinds of calcium binding proteins, except calmodulin, in bovine<br />

lung extract. Biochem. Biophys. Res. Commun. 240, 341–347.<br />

13. Shishibori, T., Oyama, Y., Matsushita, O., Yamashita, K., Furuichi, H., Okabe, A.,<br />

et al. (1999) Three distinct anti-allergic drugs, amlexanox, cromolyn and tranilast,<br />

bind to S100A12 and S100A13 of the S100 protein family. Biochem. J. 338, 583–589.<br />

14. Yamashita, K., Oyama, Y., Shishibori, T., Matsushita, O., Okabe, A., and Kobayashi,<br />

R. (1999) Purification of bovine S100A12 from recombinant Escherichia coli. <strong>Protein</strong>.<br />

Expr. Purif. 16, 47–52.<br />

15. Schägger, H. and von Jagow, G. (1987) Tricine-sodium dodecyl sulfate-polyacrylamide<br />

gel electrophoresis for the separation of proteins in the range from 1 to 100 kDa.<br />

Anal. Biochem. 166, 368–379.<br />

16. Landar, A., Rustandi, R. R., Weber, D. J., and Zimmer, D. B. (1998) S100A1 utilizes<br />

different mechanisms for interacting with calcium-dependent and calciumindependent<br />

target proteins. Biochemistry 37, 17,429–17,438.<br />

17. Osterloh, D., Ivanenkov, V. V., and Gerke, V. (1998) Hydrophobic residues in the<br />

C-terminal region of S100A1 are essential for target protein binding but not for<br />

dimerization. Cell <strong>Calcium</strong> 24, 137–151.

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