Minor hemolysin-coregulated proteins (Hcp) form heteromeric complexes and mediate effector secretion in Bacteroidales

Sergio G San-Miguel1, Jessica B Hillier2, Manal Kamal Saleh Al-Ammari1

  • 1Department of Molecular Biology, Umeå University, Umeå, Sweden.

Insights

Minor Hcp proteins in Bacteroides fragilis act as effector recognition particles, facilitating secretion via the type VI secretion system (T6SS). This mechanism is conserved in Bacteroidales, aiding gut biodiversity studies.

Area of Science:

  • Microbiology
  • Bacterial Secretion Systems
  • Gut Microbiome

Background:

  • The type VI secretion system (T6SS) is crucial for bacterial interactions and antagonism.
  • Hemolysin-coregulated proteins (Hcp) are key structural components of the T6SS inner tube.
  • Bacteroidales species possess multiple Hcp proteins with largely unknown functions.

Purpose of the Study:

  • To elucidate the functional roles of the five Hcp subunits (sHcp and Hcp1-4) encoded by Bacteroides fragilis.
  • To investigate the assembly and function of Hcp subunits in the T6SS.
  • To understand the relationship between Hcp proteins and effector secretion in Bacteroidales.

Main Methods:

  • Protein interaction studies to analyze Hcp subunit assembly.
  • Biochemical and genetic analyses to determine Hcp function.
  • Comparative analysis of T6SS loci and effector gene clustering in Bacteroidales.

Main Results:

  • sHcp forms homohexamers, likely forming the main T6SS tube.
  • Minor Hcp1-4 subunits form heteromeric complexes.
  • Hcp1 and Hcp2 assemble into heterohexamers that recognize and facilitate the secretion of effector Bte1.
  • Hcp modules are syntenic with effectors, suggesting cosegregation and functional association.

Conclusions:

  • Minor Hcp subunits act as specific recognition particles for cognate effectors, mediating their secretion via the T6SS.
  • This effector recognition and secretion mechanism is conserved across Bacteroidales.
  • The findings provide a method for identifying unknown effectors by copurification with cognate Hcps, advancing gut microbiome research.

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