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1.
Protein Expr Purif ; 190: 106002, 2022 02.
Artículo en Inglés | MEDLINE | ID: mdl-34666163

RESUMEN

UDP-Xyl, a nucleotide sugar involved in the biosynthesis of various glycoconjugates, is difficult to obtain and quite expensive. Biocatalysis using a one-pot multi-enzyme cascade is one of the most valuable biotransformation processes widely used in the industry. Herein, two enzymes, UDP-glucose (UDP-Glc) dehydrogenase (CGIUGD) and UDP-Xyl synthase (CGIUXS) from the Pacific oyster Crassostrea gigas, which are coupled together for the biotransformation of UDP-Xyl, were characterized. The optimum pH was determined to be pH 9.0 for CGIUGD and pH 7.5 for CGIUXS. Both enzymes showed the highest activity at 37 °C. Neither enzyme is metal ion-dependent. On this basis, a single factor and orthogonal test were applied to optimize the condition of biotransformation of UDP-Xyl from UDP-Glc. Orthogonal design L9 (33) was conducted to optimize processing variables of enzyme amount, pH, and temperature. The conversion of UDP-Xyl was selected as an analysis indicator. Optimum variables were the ratio of CGIUGD to CGIUXS of 2:5, enzymatic pH of 8.0, and temperature of 37 °C, which is confirmed by three repeated validation experiments. The UDP-Xyl conversion was 69.921% in a 1 mL reaction mixture by optimized condition for 1 h. This is the first report for the biosynthesis of UDP-Xyl from oyster enzymes.


Asunto(s)
Biocatálisis , Crassostrea/genética , Ligasas/química , Oxidorreductasas/química , Uridina Difosfato/síntesis química , Animales , Crassostrea/enzimología , Ligasas/genética , Oxidorreductasas/genética , Proteínas Recombinantes/química , Proteínas Recombinantes/genética , Uridina Difosfato/química
2.
Sheng Wu Gong Cheng Xue Bao ; 22(3): 431-7, 2006 May.
Artículo en Chino | MEDLINE | ID: mdl-16755923

RESUMEN

The transgenic wheat of improved resistance to the storage pest was production. We have introduced the cowpea trypsin inhibitor gene (CpTI) into cultured embryonic callus cells of immature embryos of wheat elite line by Agrobacterium-mediated method. Independent plantlets were obtained from the kanamycin-resistant calli after screening. PCR and real time PCR analysis, PCR-Southern and Southern blot hybridization indicated that there were 3 transgenic plants viz. transformed- I, II and III (T- I, T-II and T-III). The transformation frequencies were obviously affected by Agrobacterium concentration, the infection duration and transformation treatment. The segregations of CpTI in the transgenic wheat progenies were not easily to be elucidated, and some transgenic wheat lines (T- I and T-III) showed Mendelian segregations. The determinations of insect resistance to the stored grain insect of wheat viz. the grain moth (Sitotroga cerealella Olivier) indicated that the 3 transgenic wheat progeny seeds moth-resistance was improved significantly. The seed moth-eaten ratio of T- I, T-II, T-III and nontransformed control was 19.8%, 21.9%, 32.9% and 58.3% respectively. 3 transgenic wheat T1 PCR-positive plants revealed that the 3 transgenic lines had excellent agronomic traits. They supplied good germplasm resource of insect-resistance for wheat genetic improvement.


Asunto(s)
Proteínas de Plantas/genética , Triticum/genética , Inhibidores de Tripsina/genética , Agrobacterium tumefaciens/genética , Animales , Himenópteros/crecimiento & desarrollo , Lepidópteros/crecimiento & desarrollo , Pisum sativum/genética , Plantas Modificadas Genéticamente/genética , Transformación Genética , Inhibidores de Tripsina/biosíntesis , alfa-Amilasas/antagonistas & inhibidores
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