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1JA3

Crystal Structure of the Murine NK Cell Inhibitory Receptor Ly-49I

Summary for 1JA3
Entry DOI10.2210/pdb1ja3/pdb
DescriptorMHC class I recognition receptor Ly49I (1 entity in total)
Functional Keywordsnk-cell surface glycoprotein, immune system
Biological sourceMus musculus (house mouse)
Total number of polymer chains2
Total formula weight30249.21
Authors
Dimasi, N.,Sawicki, W.M.,Reineck, L.A.,Li, Y.,Natarajan, K.,Murgulies, D.H.,Mariuzza, A.R. (deposition date: 2001-05-29, release date: 2002-07-17, Last modification date: 2024-11-13)
Primary citationDimasi, N.,Sawicki, M.W.,Reineck, L.A.,Li, Y.,Natarajan, K.,Margulies, D.H.,Mariuzza, R.A.
Crystal structure of the Ly49I natural killer cell receptor reveals variability in dimerization mode within the Ly49 family.
J.Mol.Biol., 320:573-585, 2002
Cited by
PubMed Abstract: Natural killer (NK) cells play a crucial role in the detection and destruction of virally infected and tumor cells during innate immune responses. The cytolytic activity of NK cells is regulated through a balance of inhibitory and stimulatory signals delivered by NK receptors that recognize classical major histocompatabilty complex class I (MHC-I) molecules, or MHC-I homologs such as MICA, on target cells. The Ly49 family of NK receptors (Ly49A through W), which includes both inhibitory and activating receptors, are homodimeric type II transmembrane glycoproteins, with each subunit composed of a C-type lectin-like domain tethered to the membrane by a stalk region. We have determined the crystal structure, at 3.0 A resolution, of the murine inhibitory NK receptor Ly49I. The Ly49I monomer adopts a fold similar to that of other C-type lectin-like NK receptors, including Ly49A, NKG2D and CD69. However, the Ly49I monomers associate in a manner distinct from that of these other NK receptors, forming a more open dimer. As a result, the putative MHC-binding surfaces of the Ly49I dimer are spatially more distant than the corresponding surfaces of Ly49A or NKG2D. These structural differences probably reflect the fundamentally different ways in which Ly49 and NKG2D receptors recognize their respective ligands: whereas the single MICA binding site of NKG2D is formed by the precise juxtaposition of two monomers, each Ly49 monomer contains an independent binding site for MHC-I. Hence, the structural constraints on dimerization geometry may be relatively relaxed within the Ly49 family. Such variability may enable certain Ly49 receptors, like Ly49I, to bind MHC-I molecules bivalently, thereby stabilizing receptor-ligand interactions and enhancing signal transmission to the NK cell.
PubMed: 12096910
DOI: 10.1016/S0022-2836(02)00498-9
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3 Å)
Structure validation

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数据于2025-07-16公开中

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