Your browser doesn't support javascript.
loading
Expression of a codon-optimized ß-glucosidase from Cellulomonas flavigena PR-22 in Saccharomyces cerevisiae for bioethanol production from cellobiose.
Ríos-Fránquez, Francisco Javier; González-Bautista, Enrique; Ponce-Noyola, Teresa; Ramos-Valdivia, Ana Carmela; Poggi-Varaldo, Héctor Mario; García-Mena, Jaime; Martinez, Alfredo.
Afiliação
  • Ríos-Fránquez FJ; Departamento de Biotecnología y Bioingeniería, Cinvestav-IPN, Av. IPN 2508, Zacatenco, 07360, Mexico City, Mexico.
  • González-Bautista E; Departamento de Biotecnología y Bioingeniería, Cinvestav-IPN, Av. IPN 2508, Zacatenco, 07360, Mexico City, Mexico.
  • Ponce-Noyola T; Departamento de Biotecnología y Bioingeniería, Cinvestav-IPN, Av. IPN 2508, Zacatenco, 07360, Mexico City, Mexico. tponce@cinvestav.mx.
  • Ramos-Valdivia AC; Departamento de Biotecnología y Bioingeniería, Cinvestav-IPN, Av. IPN 2508, Zacatenco, 07360, Mexico City, Mexico.
  • Poggi-Varaldo HM; Departamento de Biotecnología y Bioingeniería, Cinvestav-IPN, Av. IPN 2508, Zacatenco, 07360, Mexico City, Mexico.
  • García-Mena J; Departamento de Genética y Biología Molecular, Cinvestav-IPN, Av. IPN 2508, Zacatenco, 07360, Mexico City, Mexico.
  • Martinez A; Departamento de Ingeniería Celular y Biocatálisis, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Apdo. Postal 510-3, 62250, Cuernavaca, Morelos, Mexico.
Arch Microbiol ; 199(4): 605-611, 2017 May.
Article em En | MEDLINE | ID: mdl-28138738
ABSTRACT
Bioethanol is one of the main biofuels produced from the fermentation of saccharified agricultural waste; however, this technology needs to be optimized for profitability. Because the commonly used ethanologenic yeast strains are unable to assimilate cellobiose, several efforts have been made to express cellulose hydrolytic enzymes in these yeasts to produce ethanol from lignocellulose. The C. flavigenabglA gene encoding ß-glucosidase catalytic subunit was optimized for preferential codon usage in S. cerevisiae. The optimized gene, cloned into the episomal vector pRGP-1, was expressed, which led to the secretion of an active ß-glucosidase in transformants of the S. cerevisiae diploid strain 2-24D. The volumetric and specific extracellular enzymatic activities using pNPG as substrate were 155 IU L-1 and 222 IU g-1, respectively, as detected in the supernatant of the cultures of the S. cerevisiae RP2-BGL transformant strain growing in cellobiose (20 g L-1) as the sole carbon source for 48 h. Ethanol production was 5 g L-1 after 96 h of culture, which represented a yield of 0.41 g g-1 of substrate consumed (12 g L-1), equivalent to 76% of the theoretical yield. The S. cerevisiae RP2-BGL strain expressed the ß-glucosidase extracellularly and produced ethanol from cellobiose, which makes this microorganism suitable for application in ethanol production processes with saccharified lignocellulose.
Assuntos
Palavras-chave

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Saccharomyces cerevisiae / Celobiose / Beta-Glucosidase / Cellulomonas / Etanol / Biocombustíveis Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Saccharomyces cerevisiae / Celobiose / Beta-Glucosidase / Cellulomonas / Etanol / Biocombustíveis Idioma: En Ano de publicação: 2017 Tipo de documento: Article