首页> 美国卫生研究院文献>The EMBO Journal >Expression of conformationally constrained adhesion peptide in an antibody CDR loop and inhibition of natural killer cell cytotoxic activity by an antibody antigenized with the RGD motif.
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Expression of conformationally constrained adhesion peptide in an antibody CDR loop and inhibition of natural killer cell cytotoxic activity by an antibody antigenized with the RGD motif.

机译:构象受约束的粘附肽在抗体CDR环中的表达以及被RGD基序抗原化的抗体对天然杀伤细胞的细胞毒活性的抑制。

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摘要

We report that an antibody engineered to express three Arg-Gly-Asp (RGD) repeats in the third complementarity-determining region of the heavy chain (antigenized antibody) efficiently inhibits the lysis of human erythroleukemia K-562 cells by natural killer (NK) cells. Synthetic peptides containing RGD did not inhibit. Inhibition was specific for the (RGD)3-containing loop and required simultaneous occupancy of the Fc receptor (CD16) on effector cells. The antigenized antibody inhibited other forms of cytotoxicity mediated by NK cells but not cytotoxicity mediated by major histocompatibility complex-restricted cytotoxic T lymphocytes (CTL). A three-dimensional model of the engineered antibody loop shows the structure and physicochemical characteristics probably required for the ligand activity. The results indicate that an RGD motif is involved in the productive interaction between NK and target cells. Moreover, they show that peptide expression in the hypervariable loops of an antibody molecule is an efficient procedure for stabilizing oligopeptides within a limited spectrum of tertiary structures. This is a new approach towards imparting ligand properties to antibody molecules and can be used to study the biological function and specificity of short peptide motifs, including those involved in cell adhesion.
机译:我们报告说,一种工程改造为在重链的第三个互补决定区中表达三个Arg-Gly-Asp(RGD)重复序列的抗体(抗原化抗体)有效地抑制了人类杀伤性K-562细胞被自然杀手(NK)溶解细胞。含有RGD的合成肽没有抑制作用。抑制对于含(RGD)3的环具有特异性,并且需要同时在效应细胞上同时占据Fc受体(CD16)。抗原化的抗体抑制NK细胞介导的其他形式的细胞毒性,但不抑制主要组织相容性复合物限制的细胞毒性T淋巴细胞(CTL)介导的细胞毒性。工程抗体环的三维模型显示了配体活性可能需要的结构和理化特性。结果表明,RGD基序参与NK和靶细胞之间的生产性相互作用。此外,他们表明,抗体分子高变环中的肽表达是稳定有限范围内三级结构内寡肽的有效方法。这是一种赋予抗体分子配体特性的新方法,可用于研究短肽基序的生物学功能和特异性,包括那些与细胞粘附有关的基序。

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