AI Article Synopsis

  • Protein secretion is a key biological process that varies between organisms, with most research focusing on Gram-negative bacteria, making the study of Gram-positive bacteria like TK24 important.
  • TK24 releases many proteins into the growth medium, with two main classes identified: stable "house-keeping" proteins involved in basic cell functions, and a variable subset whose levels change based on the growth medium.
  • Changes in protein abundance are primarily driven by transcriptional regulation rather than alterations in the components that export proteins, suggesting complex mechanisms are involved in selecting which proteins are secreted.

Article Abstract

Protein secretion is a central biological process in all organisms. Most studies dissecting bacterial secretion mechanisms have focused on Gram-negative cell envelopes such as that of However, proteomics analyses in Gram negatives is hampered by their outer membrane. Here we studied protein secretion in the Gram-positive bacterium TK24, in which most of the secretome is released in the growth medium. We monitored changes of the secretome as a function of growth phase and medium. We determined distinct protein classes of "house-keeping" secreted proteins that do not change their appearance or abundance in the various media and growth phases. These comprise mainly enzymes involved in cell wall maintenance and basic transport. In addition, we detected significant abundance and content changes to a sub-set of the proteome, as a function of growth in the different media. These did not depend on the media being minimal or rich. Transcriptional regulation but not changes in export machinery components can explain some of these changes. However, additional downstream mechanisms must be important for selective secretome funneling. These observations lay the foundations of using as a model organism to study how metabolism is linked to optimal secretion and help develop rational optimization of heterologous protein production.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6398212PMC
http://dx.doi.org/10.1074/mcp.RA118.000899DOI Listing

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