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The interaction with H-2D(d) in cis is associated with a conformational change in the Ly49A NK cell receptor
Jonathan Back1, Georgi S Angelov, Roy A Mariuzza
1Ludwig Center for Cancer Research of the University of Lausanne Epalinges, Switzerland.
Insights
Mouse natural killer (NK) cells use Ly49 receptors to interact with major histocompatibility complex class I (MHC-I) molecules. This study shows NK cell Ly49A receptors undergo conformational changes when binding MHC-I on the same cell, enhancing NK cell sensitivity.
Area of Science:
- Immunology
- Cell Biology
- Biophysics
Background:
- Mouse natural killer (NK) cells utilize Ly49 receptors to recognize major histocompatibility complex class I (MHC-I) molecules.
- Inhibitory Ly49 receptors binding MHC-I on other cells (trans) prevent NK cell killing of normal cells.
- Some Ly49 receptors also bind MHC-I on the NK cell itself (cis), sequestering receptors and increasing NK cell sensitivity.
Purpose of the Study:
- To investigate the proposed model of two distinct Ly49 receptor conformations for cis and trans binding.
- To provide direct evidence for conformational changes in Ly49A upon cis interaction with MHC-I on live cells.
Main Methods:
- Utilized fluorescence resonance energy transfer (FRET) to measure the distance between the Ly49A ligand-binding domain and the cell membrane.
- Engineered Ly49A variants with shortened stalks to alter the distance.
- Assessed FRET changes upon co-expression of cognate MHC-I and disruption of cis complexes using acid treatment.
Main Results:
- Shortening the Ly49A stalk significantly increased FRET, indicating a reduced distance between the binding domain and the membrane.
- Co-expression of MHC-I reduced FRET in shortened stalk variants, demonstrating cis association alters FRET.
- Disruption of cis complexes increased FRET, further supporting that cis binding induces conformational changes.
Conclusions:
- The interaction of Ly49A with MHC-I in cis is associated with a conformational change on the surface of live NK cells.
- The findings support the model of distinct Ly49 receptor conformations for cis and trans binding.
- The FRET-based approach is a viable method for studying conformational changes in cell surface receptors.
Abstract:
Mouse natural killer (NK) cells express Ly49 family receptors that recognize major histocompatibility complex class I (MHC-I) molecules. By interacting with MHC-I molecules expressed on other cells (in trans), inhibitory Ly49 receptors prevent the NK cell-mediated killing of normal cells. In addition, some Ly49 receptors have the unusual property to also interact with MHC-I molecules expressed by the NK cell itself (in cis). cis Binding sequesters a significant fraction of the NK cells' Ly49 receptors, reducing the number of receptors available for trans binding. This lowers the threshold at which NK cell activation exceeds inhibition rendering NK cells more sensitive. It is unclear how Ly49 receptors can bind MHC-I in trans and in cis using the same binding site. We have proposed that this is mediated by two distinct conformations of Ly49 receptors. Here we have tested this model by inferring the distance between the ligand-binding domain of Ly49A and the cell membrane using fluorescence resonance energy transfer (FRET). Consistent with the concept, reducing the distance between the ligand-binding domain of Ly49A and the cell membrane, by shortening the Ly49A stalk, resulted in a substantially increased FRET. The co-expression of cognate MHC-I ligand reduced FRET derived from Ly49A variants with a shortened stalk, indicating that cis association alters FRET. Indeed, FRET improved when cis complexes were disrupted using acid-mediated destruction of MHC-I complexes. These data provide direct evidence that the interaction with MHC-I in cis is associated with a conformational change in the Ly49A receptor on the surface of live cells. The novel FRET based approach may be generally applicable to study conformational changes in cell surface receptors.
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