Proteolytic degradation by host proteases is one of the key issues in the application of filamentous fungi for non-fungal protein production. In this study the influence of several environmental factors on the production of extracellular proteases of Aspergillus niger was investigated systematically in controlled batch cultures. Of all factors investigated in a series of initial screening experiments, culture pH and nitrogen concentration in particular strongly affected extracellular protease activities. For instance, at a culture pH of 4, protease activity was higher than at pH 5, and protease activity increased with increasing concentrations of ammonium as nitrogen source. Interestingly, an interdependence was observed for several of the ...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Proteolytic degradation by host proteases is one of the key issues in the application of filamentous...
The effect of environmental conditions on extracellular protease activity in controlled fermentation...
Aspergillus niger (NRRL 1785) has been reported as a good producer of acid protease with optimum pH...
A study was made of the effect of pH of medium (3.0-8.0), temp. of incubation (20-45°C), N source (i...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
The growth of Aspergillus niger (NRRL 1785) was investigated and monitored over a five-day fermentat...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
An alkaline protease-producing fungus was screened from potato grown soil fields of Bangalore and id...
This study reports the proteases production by Aspergillus niger LBA02 under solid state fermentatio...
The synthesis of acid protease by Aspergillus oryzae AS3042 was enhanced significantly with the mixe...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Proteolytic degradation by host proteases is one of the key issues in the application of filamentous...
The effect of environmental conditions on extracellular protease activity in controlled fermentation...
Aspergillus niger (NRRL 1785) has been reported as a good producer of acid protease with optimum pH...
A study was made of the effect of pH of medium (3.0-8.0), temp. of incubation (20-45°C), N source (i...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
The growth of Aspergillus niger (NRRL 1785) was investigated and monitored over a five-day fermentat...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
Although host proteases are often considered to have a negative impact upon heterologous protein pro...
An alkaline protease-producing fungus was screened from potato grown soil fields of Bangalore and id...
This study reports the proteases production by Aspergillus niger LBA02 under solid state fermentatio...
The synthesis of acid protease by Aspergillus oryzae AS3042 was enhanced significantly with the mixe...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...
Among the various groups of microorganisms filamentous fungi are most widely exploited because of th...