Page 423 - 73_04
P. 423
VOL. 73 (4), 1199-1236, 2007 BIOCATÁLISIS APLICADA A LA QUÍMICA...
(3) HAKI, G.D. AND RAKSHIT, S.K. (2003) Developments in industrially important
(4) thermostable enzymes: a review. Bioresource Technology. 89: 17–34.
(5) DOMINGUEZ DE MARÍA, P.; XENAKIS, A. AND SINISTERRA, J.V. (2004) Enz. Microb.
Technol. 35: 277-283.
(6) RAMOS MARTÍNEZ, J.; SINISTERRA, J.V. AND SÁNCHEZ-MONTERO, J.M. (2003) Este-
(7) rification and transesterificacion catalysed by lipases of thermophilic micro-
(8) organisms using liquid ionic as solvent. 9 th FECS Conference and 2nd SFC
(9) meeting on Chemistry and theEnvironment.Behaviour of Chemicals in the
(10) Environment. Olomouc (República Checa).
(11) RÚA, M.L.; DÍAZ-MAURIÑO, T., FERNANDEZ, V.M.; OTERO, C. Y BALLESTEROS, A.
(12) (1993) Purificación and Characterization of two distinct lipases from Candi-
da cylindracea. Biochim. Biophys. Acta. 1078: 181-189.
(13) HERNAIZ, M.J.; SANCHEZ-MONTERO, J.M. Y SINISTERRA, J.V. (1997) New Differen-
(14) ces between Isoenzymes A and B from Candida rugosa Lipase. Biothechnolo-
(15) gy Letters. 19: 303-306.
CHAMORRO, S.A.; SANCHEZ-MONTERO, J.M.; ALCÁNTARA, A.R. AND SINISTERRA J.V.
(1998) Treatment of Candida rugosa Lipase with short-chain polar organic
solvents enhances its hydrolytic and synthetic activities. Biotechnology Let-
ters. 5: 499-505.
CHAMORRO, S.; ALCÁNTARA, A.R.; DE LA CASA, R.M.; SINISTERRA J.V. AND. SANCHEZ-
MONTERO J.M. (2001) Small Water Amounts Increase the Catalytic Behaviour
of Polar Organic Solvents Pretreated Candida rugosa Lipase. Journal Molecu-
lar Catalysis B:Enzymatic. 11: 939-947.
CÁRDENAS, F.; ÁLVAREZ, E.; DE CASTRO-ÁLVAREZ, M.S.; SANCHEZ-MONTERO, J.M.;
VALMASEDA, M.; ELSON, S.W. AND SINISTERRA J.V. (2001) Screening and Catalytic
activity in Organic Synthesis of Novel Fungal and Yeast Crude Lipases. Jo-
urnal of Molecular Catalysis B:Enzymatic. 14: 11-123.
CÁRDENAS, F.; CASTRO, M.S.; SANCHEZ-MONTERO, J.M.; SINISTERRA, J.V.; VALMASE-
DA, M S.; ELSON, E. AND ÁLVAREZ, E. (2001) Screening of Lipase Producing
Microorganisms and Prelyminary Characterisation of the Lipases in Organic
Reactions. Enzyme and Microbial Technology. 28: 145-154.
SÁNCHEZ, A.; FERRER, P.; SERRANO, A.; VALERO, F., SOLÀ, C.; PERNAS, M.; RÚA,
M.L.; FERNÁNDEZ-LAFUENTE, R.; GUISÁN, J.M.; DE LA CASA, R.M.; SINISTERRA, J.V.
AND SÁNCHEZ- MONTERO, J.M. (1999) A Controlled Fed-Batch Cultivation for
the Production of New Crude Lipases from Candida Rugosa with Improved
Properties in Fine Chemistry. Journal of Biotechnology. 69: 169-182.
DOMÍNGUEZ DE MARÍA, P.; ALCÁNTARA, A.R.; CARBALLEIRA, J.D.; DE LA CASA, R.M.;
GARCÍA-BURGOS, C.A.; HERNÁIZ, M.J.; SÁNCHEZ-MONTERO, J.M. AND SINISTERRA, J.V.
(2006) Candida rugosa lipase: A traditional and complex biocatalyst. Current
Organic Chemistry. 10: 1053-1066.
DOMINGUEZ DE MARIA, P.; SANCHEZ-MONTERO, J.M.; SINISTERRA J.V. AND ALCÁNTA-
RA. A.R. (2006) Understanding C. rugosa lipases: an overview. Biotechnol.
Advances. 24: 180-196.
HERNAIZ, M.J.; SANCHEZ-MONTERO J.M. AND SINISTERRA. J.V. (1999) Modification
of Purified Lipases from Candida rugosa with Polyethylene Glycol: A Syste-
matic Study. Enzyme Microbial Technology. 24: 182-190.
1233