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Understanding the regulation of extracellular protease gene expression in fungi: a key step towards their biotechnological applications.

C SnymanL W TheronBenoit Divol
Published in: Applied microbiology and biotechnology (2019)
The secretion of proteases by certain species of yeast and filamentous fungi is of importance not only for their biological function and survival, but also for their biotechnological application to various processes in the food, beverage, and bioprocessing industries. A key step towards understanding the role that these organisms play in their environment, and how their protease-secreting ability may be optimally utilised through industrial applications, involves an evaluation of those factors which influence protease production. The objective of this review is to provide an overview of the findings from investigations directed at elucidating the regulatory mechanisms underlying extracellular protease secretion in yeast and filamentous fungi, and the environmental stimuli that elicit these responses. The influence of nitrogen-, carbon-, and sulphur-containing compounds, as well as proteins, temperature, and pH, on extracellular protease regulation, which is frequently exerted at the transcriptional level, is discussed in particular depth. Protease-secreting organisms of biotechnological interest are also presented in this context, in an effort to explore the areas of industrial significance that could possibly benefit from such knowledge. In this way, the establishment of a platform of existing knowledge regarding fungal protease regulation is attempted, with the particular goal of aiding in the practical application of these organisms to processes that require secretion of this enzyme.
Keyphrases
  • gene expression
  • healthcare
  • heavy metals
  • wastewater treatment
  • gram negative
  • dna methylation
  • high throughput
  • optical coherence tomography
  • oxidative stress
  • risk assessment
  • free survival
  • genetic diversity