Platelet-derived major histocompatibility complex class I coating on Treponema pallidum attenuates natural killer cell lethality

Virulence. 2024 Dec;15(1):2350892. doi: 10.1080/21505594.2024.2350892. Epub 2024 May 14.

Abstract

The evasive tactics of Treponema pallidum pose a major challenge in combating and eradicating syphilis. Natural killer (NK) cells mediate important effector functions in the control of pathogenic infection, preferentially eliminating targets with low or no expression of major histocompatibility complex (MHC) class I. To clarify T. pallidum's mechanisms in evading NK-mediated immunosurveillance, experiments were performed to explore the cross-talk relations among T. pallidum, NK cells, and platelets. T. pallidum adhered to, activated, and promoted particle secretion of platelets. After preincubation with T. pallidum, platelets expressed and secreted high levels of MHC class I, subsequently transferring them to the surface of T. pallidum, potentially inducing an immune phenotype characterized by the "pseudo-expression" of MHC class I on the surface of T. pallidum (hereafter referred to a "pseudo-expression" of MHC class I). The polA mRNA assay showed that platelet-preincubated T. pallidum group exhibited a significantly higher copy number of polA transcript than the T. pallidum group. The survival rate of T. pallidum mirrored that of polA mRNA, indicating that preincubation of T. pallidum with platelets attenuated NK cell lethality. Platelets pseudo-expressed the MHC class I ligand on the T. pallidum surface, facilitating binding to killer cell immunoglobulin-like receptors with two immunoglobulin domains and long cytoplasmic tail 3 (KIR2DL3) on NK cells and initiating dephosphorylation of Vav1 and phosphorylation of Crk, ultimately attenuating NK cell lethality. Our findings elucidate the mechanism by which platelets transfer MHC class I to the T. pallidum surface to evade NK cell immune clearance.

Keywords: Immunosurveillance; MHC class I; Treponema pallidum; natural killer cells; platelets.

MeSH terms

  • Blood Platelets* / immunology
  • Blood Platelets* / microbiology
  • Histocompatibility Antigens Class I* / immunology
  • Humans
  • Immune Evasion
  • Killer Cells, Natural* / immunology
  • Syphilis* / immunology
  • Syphilis* / microbiology
  • Treponema pallidum* / genetics
  • Treponema pallidum* / immunology