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首页> 外文期刊>The Journal of biological chemistry >Binding Strength and Dynamics of Invariant Natural Killer Cell T Cell Receptor/CD1d-Glycosphingolipid Interaction on Living Cells by Single Molecule Force Spectroscopy
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Binding Strength and Dynamics of Invariant Natural Killer Cell T Cell Receptor/CD1d-Glycosphingolipid Interaction on Living Cells by Single Molecule Force Spectroscopy

机译:单分子力光谱法通过单分子力光谱对活细胞不变自然杀伤细胞T细胞受体/ CD1D-磷脂哌啶相互作用的结合强度和动力学

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摘要

Invariant natural killer T (iNKT) cells are a population of T lymphocytes that play an important role in regulating immunity to infection and tumors by recognizing endogenous and exogenous CD1d-bound lipid molecules. Using soluble iNKT T cell receptor (TCR) molecules, we applied single molecule force spectroscopy for the investigation of the iNKT TCR affinity for human CD1d molecules loaded with glycolipids differing in the length of the phytosphingosine chain using either recombinant CD1d molecules or lipid-pulsed THP1 cells. In both settings, the dissociation of the iNKT TCR from human CD1d molecules loaded with the lipid containing the longer phytosphingosine chain required higher unbinding forces compared with the shorter phytosphingosine lipid. Our findings are discussed in the context of previous results obtained by surface plasmon resonance measurements. We present new insights into the energy landscape and the kinetic rate constants of the iNKT TCR/human CD1d-glycosphingolipid interaction and emphasize the unique potential of single molecule force spectroscopy on living cells.
机译:不变的自然杀手T(Inkt)细胞是T淋巴细胞的群体,其通过识别内源性和外源CD1D的脂质分子来调节对感染和肿瘤的免疫发挥重要作用。使用可溶性油墨T细胞受体(TCR)分子,施加单分子力光谱,用于研究使用重组CD1D分子或脂质 - 脉冲THP1的甘磷酸线环的长度含有不同的糖脂的INKT TCR亲和力。使用重组CD1D分子或脂质脉冲THP1细胞。在两种设置中,与含有较长的肺磷酸磷酸胆碱的脂质相比,在含有较长的肺磷酸磷酸链的脂质中加入的人CD1D分子中的解离。我们的研究结果在通过表面等离子体共振测量获得的先前结果的上下文中讨论。我们将新的见解与Inkt TCR /人CD1D-糖磷脂相互作用的能量景观和动力速率常数提出,并强调了单分子力光谱对活细胞的独特潜力。

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