Artículos de revistas
Plant Lipases From Latex: Properties And Industrial Applications [lipases De Látex Vegetais: Propriedades E Aplicações Industriais]
Registro en:
Quimica Nova. , v. 29, n. 1, p. 93 - 99, 2006.
1004042
2-s2.0-33644893060
Autor
Paques F.W.
Macedo G.A.
Institución
Resumen
Biocatalysts have innumerous advantages with respect to classical chemical processes, such as high specificity. Lipases (EC 3.1.1.3) are biocatalysts with large application in synthesis and hydrolysis reactions of triacylglycerols. The search for new sources of lipases has been intensified in the last years due to the high cost of microbial and animal lipases, wich restricts their use on an industrial scale. Lipases obtained from the latex of Carica papaya, Carica pentagona, Euphorbia characias, E. wulfenii, known for their proteolytic properties, are a good alternative source. In this review, we describe the well-known sources of vegetal lipases extracted from the latex and present some of their industrial applications. 29 1 93 99 Campbell, M.K., (2000) Bioquímica, 3 a Ed., , Artmed Ed. Ltda: Porto Alegre Faber, K., (2000) Biotransformations in Organic Chemistry, 4 th Ed., , Springer - Verlag: New York Muderhwa, J., Pina, M., Graille, J., (1988) J. Oléagineux, 43, p. 385 Villeneuve, P., Muderhwa, J.M., Graille, J., Hass, M.J., (2000) J. Mol. Catal. B: Enzym., 9, p. 113 Gandhi, N.N., (1997) J. Am. Oil Chem. Soc., 74, p. 621 Conti, R., Rodrigues, J.A.R., Moran, P.J.S., (2001) Quim. Nova, 24, p. 672 Zinni, M.A., Aljinovic, E.M., Iglesias, L.E., Iribarren, A.M., (2004) Quim. Nova, 27, p. 496 Castro, H.F., Mendes, A.A., Santos, J.C., Aguiar, C.L., (2004) Quim. Nova, 27, p. 146 Carvalho, P.O., Campos, P.R.B., Noffs, M.D'A., Oliveira, J.G., Shimizu, M.T., Silva, D.M., (2003) Quim. Nova, 26, p. 75 Koblitz, M.G.B., (2003) Tese de Doutorado, , Universidade Estadual de Campinas, Brasil Antczak, U., Gora, J., Antczak, T., Galas, E., (1991) Enzyme Microb. Technol., 13, p. 589 Mukherjee, K.D., Hills, M.J., (1994) Em Lipases - Their Structure, Biochemistry and Application, , Wooley, P. Petersen, S. B., eds. Cambridge University Press, cap. 3 Macedo, G.A., Pastore, G.M., (1997) Braz. J. Food Technol., 17, p. 115 Macedo, G.A., Pastore, G.M., Rodrigues, M.I., (2004) Process Biochem., 39, p. 687 Negishi, S., Shirasawa, S., Arai, Y., Suzuki, J., Mukataka, S., (2003) Enzyme Microb. Technol., 32, p. 66 Huang, S.-H., Tsai, S.-W., (2004) J. Mol. Catal. B: Enzym., 28, p. 65 Soumanou, M.M., Bomscheuer, U.T., (2003) Enzyme Microb. Technol., 33, p. 97 Han, S.-J., Back, J.H., Yoon, M.Y., Shin, P.K., Cheong, C.S., Sung, M.-H., Hong, S.-P., Han, Y.S., (2003) Biochimie, 85, p. 501 Maria, P.D., Martinez-Alzamora, F., Moreno, S.P., Valero, F., Rua, M.L., Sánchez-Montero, J.M., Sinisterra, J.V., Alcántara, A.R., (2002) Enzyme Microb. Technol., 31, p. 283 Kontkanen, H., Tenkanen, M., Fagerström, R., Reinikainen, T., (2004) J. Biotechnol, 108, p. 51 Oliveira, P.C., Alves, G.M., Castro, H.F., (2000) Quim. Nova, 23, p. 632 Mukherjee, K.D., (1994) Prog. Lipid Res., 33, p. 165 Foglia, T.A., Villeneuve, P., (1997) J. Am. Oil Chem. Soc., 74, p. 1447 Boiler, T., (1986) Em Plant Proteolytic Enzymes, 1. , Dalling, M. J., ed., Boca Raton-Flórida: CRC Press Inc., cap. 4 Villeneuve, P., (2003) Eur. J. Lipid Sci. Technol., 105, p. 308 Giordani, R., Moulina, A., Verger, R., (1991) Photochemistry, 30, p. 1069 Caro, Y., Villeneuve, P., Pina, M., Reynes, M., Graille, J., (2000) J. Am. Oil Chem. Soc., 77, p. 349 Palocci, C., Soro, S., Cernia, E., Fiorillo, F., Belsito, C.M.A., Monacelli, B., Monache, G.D., Pasqua, G., (2003) Plant Sci., 165, p. 577 Dhuique-Mayer, C., Caro, Y., Pina, M., Ruales, J., Domier, M., Graille, J., (2001) Biotechnol Lett., 23, p. 1021 Villenevue, P., Pina, M., Monet, D., Graille, J., (1995) J. Am. Oil Chem. Soc., 72, p. 753 Gandhi, N.N., Mukherjee, K.D., (2001) J. Mol. Catal. B: Enzym., 11, p. 271 Caro, Y., Villeneuve, P., Pina, M., Reynes, M., Graille, J., (2000) J. Am. Oil Chem. Soc., 77, p. 891 Villeneuve, P., Skarbek, P.A., Pina, M., Graille, J., Foglia, T.A., (1997) Biotechnol. Tech., 11, p. 637 Caro, Y., Pina, M., Turon, F., Guilbert, S., Mougeot, E., Fetsch, D.V., Attwool, P., Graille, I., (2002) J. Biotechnol. Bioeng., 77, p. 693 Gandhi, N.N., Mukherjee, K.D., (2000) J. Agric. Food Chem., 48, p. 566 Gandhi, N.N., Mukherjee, K.D., (2001) J. Am. Oil Chem. Soc., 78, p. 161 Murkhejee, K.D., Kiewitt, I., (1996) J. Agric. Food Chem., 44, p. 1948 Lee, K.-T., Foglia, T.A., (2000) J. Am. Oil Chem. Soc., 77, p. 1027 Xu, X., (2000) Eur. J. Lipid Sci. Technol., 105, p. 287 Mangos, T.J., Jones, K.C., Foglia, T.A., (1999) J. Am. Oil Chem. Soc., 76, p. 1127 Murkhejee, K.D., Kiewitt, I., (1998) Biotechnol. Lett., 20, p. 613 César, A.C., Silva, R., Lucarini, A.C., (2000) Rev. Inic. Cient.-Univ. de São Paulo/ Esc. Eng. De. São Carlos, 1, p. 47 Caro, Y., Dhuique-Mayer, C., Turon, F., Pina, M., Reynes, M., Graille, J., (2001) Biotechnol. Lett., 23, p. 2035 Mukherjee, K., Kiewitt, I., (1998) J. Agric. Food Chem., 46, p. 2427 Lynn, K.R., Clevette-Radford, N.A., (1986) Phytochemistry, 25, p. 1559