Monitoring dimer structure orientation of full-length XIAP in living cells using a bioluminescence-based

Kayhan Mehdizadeh1, Farangis Ataei1, Saman Hosseinkhani1

  • 1Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.

Insights

Full-length X-chromosome-linked inhibitor of apoptosis protein (XIAP) forms stable dimers. This study developed a luminescence model to show XIAP monomers must orient in the same direction for dimerization within living cells.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • X-chromosome-linked inhibitor of apoptosis protein (XIAP) is crucial for regulating cell death.
  • XIAP's homo- and hetero-dimerization are key to its function in cell death signaling.
  • The orientation of full-length XIAP homo-dimerization remains uncharacterized.

Purpose of the Study:

  • To develop a real-time luminescence-based model to monitor full-length XIAP-XIAP interaction and orientation in living cells.
  • To investigate the possibility and orientation of XIAP homo-dimerization.
  • To understand the structural requirements for XIAP dimerization.

Main Methods:

  • Generation and expression of luminescence-tagged XIAP constructs (Cluc-XIAP, XIAP-Cluc, Nluc-XIAP) in HEK293T cells.
  • Real-time monitoring of XIAP-XIAP interactions using luminescence signal intensity.
  • Measurement of caspase 3/7 activity to assess functional consequences of XIAP dimerization.
  • Computational analysis to predict dimerization orientations.

Main Results:

  • A luminescence-based model successfully monitored full-length XIAP interactions in living cells.
  • Co-transfection of Nluc-XIAP with Cluc-XIAP yielded high luminescence, indicating dimerization.
  • XIAP-Cluc constructs did not show luciferase activity, suggesting orientation-dependent interaction.
  • XIAP dimerization significantly decreased caspase 3/7 activity.
  • Computational analysis supported both direct and reverse dimerization, but experiments confirmed same-direction orientation for stable dimers.

Conclusions:

  • Full-length XIAP is capable of forming stable dimers.
  • XIAP dimerization requires a specific orientation where monomers align in the same direction.
  • The developed luminescence model provides a valuable tool for studying XIAP interactions in real-time.
  • Understanding XIAP dimerization orientation is critical for its role in apoptosis regulation.

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