Rapid and unidirectional perforin pore delivery at the cytotoxic immune synapse

Jamie A Lopez1, Misty R Jenkins, Jesse A Rudd-Schmidt

  • 1Cancer Immunology Program, Peter MacCallum Cancer Centre, East Melbourne, Victoria 3002, Australia.

Insights

Cytotoxic lymphocytes (CLs) efficiently kill target cells. This study visualizes CLs delivering lethal perforin hits, revealing distinct human and mouse CL signaling for targeted apoptosis.

Area of Science:

  • Immunology
  • Cell Biology
  • Molecular Biology

Background:

  • Cytotoxic lymphocytes (CLs) are crucial for eliminating virus-infected and malignant cells.
  • Understanding the spatiotemporal dynamics of CL-target cell interactions is vital but limited by a lack of reporters.

Purpose of the Study:

  • To visualize and quantitatively analyze the engagement and lethal hit delivery by primary human and mouse CLs to target cells.
  • To characterize the calcium signaling profiles and kinetics of perforin delivery in different CL types.

Main Methods:

  • Novel live cell microscopy technique for real-time visualization of CL-target cell interactions.
  • Quantitative analysis of individual effector-target cell conjugates.
  • Monitoring calcium flux events and perforin delivery.

Main Results:

  • A single calcium flux event triggered human CL degranulation and perforin delivery within 65-100s.
  • Mouse NK cells required one, while CD8+ T cells required multiple calcium flux events for degranulation.
  • Perforin delivery was unidirectional to the target cell membrane, inducing apoptosis, and CLs were susceptible to perforin-dependent killing.

Conclusions:

  • The study reveals the efficiency and specificity of perforin pore delivery by CLs.
  • Distinct calcium signaling mechanisms regulate degranulation and killing in human and mouse CLs.
  • Perforin delivery is a targeted process, but effector CLs are not inherently resistant to it.

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