Related Experiment Video
Updated: Jan 19, 2026

Improvement of Bacillus subtilis Spore Enumeration and Label Analysis in Flow Cytometry
Published on: June 30, 2023
Identification and optimization of PrsA in Bacillus subtilis for improved yield of amylase
Ane Quesada-Ganuza1, Minia Antelo-Varela2, Jeppe C Mouritzen1
1Research and Technology, Novozymes A/S, Krogshoejvej 36, 2880, Basgvaerd, Denmark.
Background:
PrsA is an extracytoplasmic folding catalyst essential in Bacillus subtilis. Overexpression of the native PrsA from B. subtilis has repeatedly lead to increased amylase yields. Nevertheless, little is known about how the overexpression of heterologous PrsAs can affect amylase secretion.
Results:
In this study, the final yield of five extracellular alpha-amylases was increased by heterologous PrsA co-expression up to 2.5 fold. The effect of the overexpression of heterologous PrsAs on alpha-amylase secretion is specific to the co-expressed alpha-amylase. Co-expression of a heterologous PrsA can significantly reduce the secretion stress response. Engineering of the B. licheniformis PrsA lead to a further increase in amylase secretion and reduced secretion stress.
Conclusions:
In this work we show how heterologous PrsA overexpression can give a better result on heterologous amylase secretion than the native PrsA, and that PrsA homologs show a variety of specificity towards different alpha-amylases. We also demonstrate that on top of increasing amylase yield, a good PrsA-amylase pairing can lower the secretion stress response of B. subtilis. Finally, we present a new recombinant PrsA variant with increased performance in both supporting amylase secretion and lowering secretion stress.
Related Concept Videos
06:39Improvement of Bacillus subtilis Spore Enumeration and Label Analysis in Flow Cytometry
Production and Aerosol-Based Deposition of Bacillus subtilis Spores
07:57Prevention of Heat Stress Adverse Effects in Rats by Bacillus subtilis Strain
08:58Visualization of Germinosomes and the Inner Membrane in Bacillus subtilis Spores
Histological and Hematological Analyses to Evaluate the Effects of Bacillus subtilis in Heat-Stressed Rats
08:41Identification of Fatty Acids in Bacillus cereus
