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C 型凝集素样受体 Nkrp1b:结构蛋白质组学揭示影响蛋白质构象和相互作用的特征。

The C-type lectin-like receptor Nkrp1b: Structural proteomics reveals features affecting protein conformation and interactions.

机构信息

BIOCEV- Institute of Microbiology of the Czech Academy of Sciences, Vestec, Czech Republic; Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic.

BIOCEV- Institute of Microbiology of the Czech Academy of Sciences, Vestec, Czech Republic; Department of Biochemistry, Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

J Proteomics. 2019 Mar 30;196:162-172. doi: 10.1016/j.jprot.2018.11.007. Epub 2018 Nov 8.

Abstract

The cytotoxicity of mouse natural killer (NK) cells in response to pathological changes in target cells is regulated via the Nkrp1b receptor. Here, we characterized the Nkrp1b structure and structural features (stalk, loop, and oligomerization state) that affect its interactions. To study the Nkrp1b protein structure and the functional importance of its stalk, two Nkrp1b protein variants differing by the presence of the stalk were prepared. These variants were studied using a combination of structural mass spectrometry approaches with computational modeling to derive structural models. In addition, information about biological activity and localization in mammalian cells was acquired using scanning microscopy techniques and western blotting. Based on these methods, we obtained the structure of Nkrp1b ectodomain in its monomeric and dimeric conformations, identified the dimerization interface, and determined disulfide connections within the molecule. We found that Nkrp1b occurs as a mixture of monomers and homodimers, both in vitro and in vivo. SIGNIFICANCE: Despite the long-standing assumption that Nkrp1 proteins are homodimers connected by disulfide bonds in the stalk region, our data showed that both Nkrp1b protein variants form monomers and homodimers irrespective of the presence of the stalk. We demonstrated that the stalk is not crucial for protein dimerization or ligand binding and that Nkrp1b interacts with its natural ligands only in its monomeric conformation; therefore, dimers may have another regulatory function. Using a unique combination of computational, biochemical, and biological methods, we revealed the structural conformation and behavior of Nkrp1b in its native state. In addition, it is a first report utilizing the intermolecular chemical cross-linking of light- and heavy-labeled protein chains together with ion mobility-mass spectrometry to design the structural models of protein homodimers.

摘要

小鼠自然杀伤 (NK) 细胞对靶细胞病理变化的细胞毒性受 Nkrp1b 受体调控。在此,我们对 Nkrp1b 结构及其影响相互作用的结构特征(柄部、环和寡聚状态)进行了表征。为了研究 Nkrp1b 蛋白结构及其柄部的功能重要性,我们制备了两种 Nkrp1b 蛋白变体,它们在柄部的存在上有所不同。使用结构质谱方法与计算建模相结合的组合来研究这些变体,以得出结构模型。此外,还使用扫描显微镜技术和蛋白质印迹法获取有关其在哺乳动物细胞中的生物学活性和定位的信息。基于这些方法,我们获得了 Nkrp1b 胞外域在其单体和二聚体构象中的结构,确定了二聚化界面,并确定了分子内的二硫键连接。我们发现,Nkrp1b 以单体和同源二聚体的混合物形式存在,无论是在体外还是在体内。意义:尽管长期以来一直认为 Nkrp1 蛋白是通过柄部区域的二硫键连接的同源二聚体,但我们的数据表明,两种 Nkrp1b 蛋白变体均形成单体和同源二聚体,无论柄部是否存在。我们证明柄部对于蛋白二聚化或配体结合并非至关重要,并且 Nkrp1b 仅在其单体构象下与天然配体相互作用;因此,二聚体可能具有另一种调节功能。使用计算、生化和生物学方法的独特组合,我们揭示了 Nkrp1b 在其天然状态下的结构构象和行为。此外,这是首次利用轻链和重链蛋白链的分子间化学交联与离子淌度-质谱联用设计蛋白同源二聚体结构模型的报道。

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