AI Article Synopsis

  • The NKR-P1 receptor plays an important role in immune responses and cancer, requiring a detailed understanding of its interactions with the LLT1 ligand.
  • Researchers have mapped the crystal structures of the NKR-P1 and its complex with LLT1, revealing that NKR-P1 forms unexpected homodimers that can bind two LLT1 molecules simultaneously.
  • The study shows that only binding to both interfaces of LLT1 is needed for effective inhibitory signaling, contributing to a model of how these protein interactions facilitate immune synapse formation despite weak ligand-receptor affinities.

Article Abstract

Signaling by the human C-type lectin-like receptor, natural killer (NK) cell inhibitory receptor NKR-P1, has a critical role in many immune-related diseases and cancer. C-type lectin-like receptors have weak affinities to their ligands; therefore, setting up a comprehensive model of NKR-P1-LLT1 interactions that considers the natural state of the receptor on the cell surface is necessary to understand its functions. Here we report the crystal structures of the NKR-P1 and NKR-P1:LLT1 complexes, which provides evidence that NKR-P1 forms homodimers in an unexpected arrangement to enable LLT1 binding in two modes, bridging two LLT1 molecules. These interaction clusters are suggestive of an inhibitory immune synapse. By observing the formation of these clusters in solution using SEC-SAXS analysis, by dSTORM super-resolution microscopy on the cell surface, and by following their role in receptor signaling with freshly isolated NK cells, we show that only the ligation of both LLT1 binding interfaces leads to effective NKR-P1 inhibitory signaling. In summary, our findings collectively support a model of NKR-P1:LLT1 clustering, which allows the interacting proteins to overcome weak ligand-receptor affinity and to trigger signal transduction upon cellular contact in the immune synapse.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9418145PMC
http://dx.doi.org/10.1038/s41467-022-32577-6DOI Listing

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