W. M. Keck Laboratory for Structural Biology, University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, MD 20850, USA.
Proc Natl Acad Sci U S A. 2013 Jul 9;110(28):11505-10. doi: 10.1073/pnas.1303300110. Epub 2013 Jun 26.
The natural killer (NK) gene complex (NKC) encodes numerous C-type lectin-like receptors that govern the activity of NK cells. Although some of these receptors (Ly49s, NKG2D, CD94/NKG2A) recognize MHC or MHC-like molecules, others (Nkrp1, NKRP1A, NKp80, NKp65) instead bind C-type lectin-like ligands to which they are genetically linked in the NKC. To understand the basis for this recognition, we determined the structure of human NKp65, an activating receptor implicated in the immunosurveillance of skin, bound to its NKC-encoded ligand keratinocyte-associated C-type lectin (KACL). Whereas KACL forms a homodimer resembling other C-type lectin-like dimers, NKp65 is monomeric. The binding mode in the NKp65-KACL complex, in which a monomeric receptor engages a dimeric ligand, is completely distinct from those used by Ly49s, NKG2D, or CD94/NKG2A. The structure explains the exceptionally high affinity of the NKp65-KACL interaction compared with other cell-cell interaction pairs (KD = 6.7 × 10(-10) M), which may compensate for the monomeric nature of NKp65 to achieve cell activation. This previously unreported structure of an NKC-encoded receptor-ligand complex, coupled with mutational analysis of the interface, establishes a docking template that is directly applicable to other genetically linked pairs in the NKC, including Nkrp1-Clr, NKRP1A-LLT1, and NKp80-AICL.
自然杀伤 (NK) 基因复合物 (NKC) 编码众多 C 型凝集素样受体,这些受体调控 NK 细胞的活性。尽管这些受体中的一些(Ly49s、NKG2D、CD94/NKG2A)识别 MHC 或 MHC 样分子,而其他受体(Nkrp1、NKRP1A、NKp80、NKp65)则结合与 NKC 中遗传相关的 C 型凝集素样配体。为了了解这种识别的基础,我们确定了人 NKp65 的结构,NKp65 是一种在皮肤免疫监视中起作用的激活受体,与 NKC 编码的配体角质形成细胞相关的 C 型凝集素(KACL)结合。尽管 KACL 形成类似于其他 C 型凝集素样二聚体的同源二聚体,但 NKp65 是单体。在 NKp65-KACL 复合物中的结合模式中,单体受体与二聚配体结合,与 Ly49s、NKG2D 或 CD94/NKG2A 所使用的结合模式完全不同。该结构解释了 NKp65-KACL 相互作用与其他细胞-细胞相互作用对(KD = 6.7×10(-10) M)相比具有异常高亲和力的原因,这可能弥补了 NKp65 的单体性质,以实现细胞激活。该结构是 NKC 编码的受体-配体复合物的首次报道,结合界面的突变分析,建立了一个直接适用于 NKC 中其他遗传相关对的对接模板,包括 Nkrp1-Clr、NKRP1A-LLT1 和 NKp80-AICL。