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Yeast HXK2 gene reverts glucose regulation mutation of penicillin biosynthesis in P. chrysogenum
Pérez, Edmundo A.; Fernández, Francisco J.; Fierro, Francisco; Mejía, Armando; Marcos, Ana T.; Martín, Juan F.; Barrios-González, Javier.
Affiliation
  • Pérez, Edmundo A.; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
  • Fernández, Francisco J.; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
  • Fierro, Francisco; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
  • Mejía, Armando; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
  • Marcos, Ana T.; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
  • Martín, Juan F.; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
  • Barrios-González, Javier; Universidad Autónoma Metropolitana. Departamento de Biotecnología. Laboratorio de Ingeniería Genética y Metabolitos Secundarios. MX
Braz. j. microbiol ; Braz. j. microbiol;45(3): 873-883, July-Sept. 2014. ilus, graf, tab
Article in En | LILACS | ID: lil-727016
Responsible library: BR1.1
ABSTRACT
The mutant Penicillium chrysogenum strain dogR5, derived from strain AS-P-78, does not respond to glucose regulation of penicillin biosynthesis and β-galactosidase, and is partially deficient in D-glucose phosphorilating activity. We have transformed strain dogR5 with the (hexokinase) hxk2 gene from Saccharomyces cerevisiae. Transformants recovered glucose control of penicillin biosynthesis in different degrees, and acquired a hexokinase (fructose phosphorylating) activity absent in strains AS- P-78 and dogR5. Interestingly, they also recovered glucose regulation of β-galactosidase. On the other hand, glucokinase activity was affected in different ways in the transformants; one of which showed a lower activity than the parental dogR5, but normal glucose regulation of penicillin biosynthesis. Our results show that Penicillium chrysogenum AS-P-78 and dogR5 strains lack hexokinase, and suggest that an enzyme with glucokinase activity is involved in glucose regulation of penicillin biosynthesis and β-galactosidase, thus signaling glucose in both primary and secondary metabolism; however, catalytic and signaling activities seem to be independent.
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Full text: 1 Collection: 01-internacional Database: LILACS Main subject: Penicillins / Penicillium chrysogenum / Gene Expression Regulation, Fungal / Saccharomyces cerevisiae Proteins / Glucose / Hexokinase Language: En Journal: Braz J Microbiol / Braz. j. microbiol / Braz. j. microbiol. (Online) / Brazilian journal of microbiology (Impresso) Journal subject: MICROBIOLOGIA Year: 2014 Document type: Article Affiliation country: Country of publication:

Full text: 1 Collection: 01-internacional Database: LILACS Main subject: Penicillins / Penicillium chrysogenum / Gene Expression Regulation, Fungal / Saccharomyces cerevisiae Proteins / Glucose / Hexokinase Language: En Journal: Braz J Microbiol / Braz. j. microbiol / Braz. j. microbiol. (Online) / Brazilian journal of microbiology (Impresso) Journal subject: MICROBIOLOGIA Year: 2014 Document type: Article Affiliation country: Country of publication: