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Bacterial protein secretion systems: Game of types

期刊

MICROBIOLOGY-SGM
卷 168, 期 5, 页码 -

出版社

MICROBIOLOGY SOC
DOI: 10.1099/mic.0.001193

关键词

Gram; negative bacteria; bacterial cell envelope; membrane; bacteria; host interaction; bacterial virulence; bacterial competition

资金

  1. Medical Research Council [MR/S02316X/1]

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Protein trafficking across the bacterial envelope is crucial for the organization and integrity of the cells, as well as for communication between bacteria and their environment. Understanding the various protein secretion systems involved in this process is important, but the naming of these systems has become a topic of debate, raising questions about scientific rigor in assimilating findings.
Protein trafficking across the bacterial envelope is a process that contributes to the organisation and integrity of the cell. It is the foundation for establishing contact and exchange between the environment and the cytosol. It helps cells to communicate with one another, whether they establish symbiotic or competitive behaviours. It is instrumental for pathogenesis and for bacteria to subvert the host immune response. Understanding the formation of envelope conduits and the manifold strategies employed for moving macromolecules across these channels is a fascinating playground. The diversity of the nanomachines involved in this process logically resulted in an attempt to classify them, which is where the protein secretion system types emerged. As our knowledge grew, so did the number of types, and their rightful nomenclature started to be questioned. While this may seem a semantic or philosophical issue, it also reflects scientific rigour when it comes to assimilating findings into textbooks and science history. Here I give an overview on bacterial protein secretion systems, their history, their nomenclature and why it can be misleading for newcomers in the field. Note that I do not try to suggest a new nomenclature. Instead, I explore the reasons why naming could have escaped our control and I try to reiterate basic concepts that underlie protein trafficking cross membranes.

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