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Crystals of SctV from different species reveal variable symmetry for the cytosolic domain of the type III secretion system export gate.

Dominic GilzerEileen BaumNele LieskeJulia L KowalHartmut H Niemann
Published in: Acta crystallographica. Section F, Structural biology communications (2022)
Type III secretion systems (T3SSs) are proteinaceous devices employed by Gram-negative bacteria to directly transport proteins into a host cell. Substrate recognition and secretion are strictly regulated by the export apparatus of the so-called injectisome. The export gate SctV engages chaperone-bound substrates of the T3SS in its nonameric cytoplasmic domain. Here, the purification and crystallization of the cytoplasmic domains of SctV from Photorhabdus luminescens (LscV C ) and Aeromonas hydrophila (AscV C ) are reported. Self-rotation functions revealed that LscV C forms oligomers with either eightfold or ninefold symmetry in two different crystal forms. Similarly, AscV C was found to exhibit tenfold rotational symmetry. These are the first instances of SctV proteins forming non-nonameric oligomers.
Keyphrases
  • type iii
  • single cell
  • genome wide
  • cell therapy
  • stem cells
  • heat shock protein
  • room temperature
  • gene expression
  • genetic diversity
  • amino acid
  • heat stress
  • solid state