Homologous and heterologous protein production by filamentous fungi is often limited by the expression of proteases at high levels. By eliminating specific protease activities, protein production in Aspergillus niger can be improved considerably. Both classical mutagenesis and gene disruption techniques have yielded strains with reduced protease expression. Combinations of these mutations and disruptions result in a further reduction of protease activity. The coupling of efficient promoters to target genes allows their expression under conditions that repress the expression of several proteases, which further improves product yields. The strategies used have led to the development of a set of tester strains from which the appropriate geneti...
Proteolytic degradation by host proteases is one of the key issues in the application of filamentous...
As scavengers of recalcitrant polymers in the nature, filamentous fungi are excellent secretors of p...
Plant biomass, once reduced to its composite sugars, can be converted to fuel substitutes. One means...
Homologous and heterologous protein production by filamentous fungi is often limited by the expressi...
The heterologous protein production in Aspergillus niger is often limited by the activity of the hos...
Aspergillus is a widely used host organism for the industrial production of homologous and heterolog...
The dependence of filamentous fungal protease secretion on morphology was inves-tigated by employing...
The filamentous fungus Aspergillus niger is capable of producing and secreting large amounts of homo...
Much research over the past 25 years has been applied to the development of filamentous fungi, most ...
A new species of the group of black aspergilli, Aspergillus vadensis, was analyzed for its potential...
Filamentous fungi such as Aspergillus niger, Aspergillus oryzae, and Trichoderma reesei are able to ...
Expression of several Aspergillus niger genes encoding major secreted, but not vacuolar, protease ge...
Plant biomass, once reduced to its composite sugars, can be converted to fuel substitutes. One means...
Although filamentous fungi have a unique property of secreting a large amount of homologous extracel...
protein loss caused by extracellular fungal protease degradation persists. This review provides an o...
Proteolytic degradation by host proteases is one of the key issues in the application of filamentous...
As scavengers of recalcitrant polymers in the nature, filamentous fungi are excellent secretors of p...
Plant biomass, once reduced to its composite sugars, can be converted to fuel substitutes. One means...
Homologous and heterologous protein production by filamentous fungi is often limited by the expressi...
The heterologous protein production in Aspergillus niger is often limited by the activity of the hos...
Aspergillus is a widely used host organism for the industrial production of homologous and heterolog...
The dependence of filamentous fungal protease secretion on morphology was inves-tigated by employing...
The filamentous fungus Aspergillus niger is capable of producing and secreting large amounts of homo...
Much research over the past 25 years has been applied to the development of filamentous fungi, most ...
A new species of the group of black aspergilli, Aspergillus vadensis, was analyzed for its potential...
Filamentous fungi such as Aspergillus niger, Aspergillus oryzae, and Trichoderma reesei are able to ...
Expression of several Aspergillus niger genes encoding major secreted, but not vacuolar, protease ge...
Plant biomass, once reduced to its composite sugars, can be converted to fuel substitutes. One means...
Although filamentous fungi have a unique property of secreting a large amount of homologous extracel...
protein loss caused by extracellular fungal protease degradation persists. This review provides an o...
Proteolytic degradation by host proteases is one of the key issues in the application of filamentous...
As scavengers of recalcitrant polymers in the nature, filamentous fungi are excellent secretors of p...
Plant biomass, once reduced to its composite sugars, can be converted to fuel substitutes. One means...