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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Characterization of Self-Assembled Monolayers of Peptide Mimotopes of CD20 Antigen and Their Binding with Rituximab
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Characterization of Self-Assembled Monolayers of Peptide Mimotopes of CD20 Antigen and Their Binding with Rituximab

机译:CD20抗原的拟肽多肽自组装单分子膜的特征及其与利妥昔单抗的结合

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摘要

CD20, expressed in greater than 90% of B-lymphocytic lymphomas, is a target for antibody therapy. Rituximab is a chimeric therapeutic monoclonal antibody (mAb) against the protein CD20, allowing it to destroy B cells and to treat lymphoma, leukemia, transplant rejection, and autoimmune disorder. In this work, the binding of rituximab to self-assembled monolayers (SAMs) of peptide mimotopes of CD20 antigen was systematically characterized. Four peptide mimotopes of CD 20 antigen were selected from the literature and redesigned to allow their SAM immobilizations on gold electrodes through a peptide linker with cysteine. The bindings of these peptides with rituximab and control mAbs (trastuzumab and bevacizumab) were characterized by quartz crystal microbalance (QCM). Among the four peptide mimotopes initially selected, the peptide designated as CN-14 (CGSGSGSWPRWLEN) was the most selective and sensitive for rituximab binding. The CN-14 SAM was further characterized by ellipsometry and atomic force microscopy. The thickness of the CN-14 SAM film was approximately 32 angstrom, and the CN-14 SAM is suggested to be stabilized by a salt bridge of Arg-10 and Glu-13 between CN-14 peptides. The CN-14 salt bridge was evaluated by a series of modifications to the CN-14 peptide sequence and characterized by QCM. The CN-14 amide variant produced a better affinity to rituximab than CN-14 without a significant impact on selectivity. As the pK(a) of the Glu residue of CN-14 increased, the affinity of the SAM to rituximab increased, whereas the selectivity decreased. This was attributed to the weakening of the salt bridge between the CN-14 Arg-10 and Glu-13 at higher pKa values for Glu-13. Our study shows that peptide mimotopes have potential benefits in sensor applications, as the peptide-peptide interactions in the SAMs can be manipulated by the addition of functional groups to the peptide to influence the binding of target proteins.
机译:在超过90%的B淋巴细胞淋巴瘤中表达的CD20是抗体治疗的目标。利妥昔单抗是针对蛋白质CD20的嵌合治疗性单克隆抗体(mAb),可使其破坏B细胞并治疗淋巴瘤,白血病,移植排斥和自身免疫性疾病。在这项工作中,系统地表征了利妥昔单抗与CD20抗原的肽表位的自组装单层(SAMs)的结合。从文献中选择了CD 20抗原的四个肽模拟表位,并进行了重新设计,以使其通过具有半胱氨酸的肽接头将SAM固定在金电极上。这些肽与利妥昔单抗和对照mAb(曲妥珠单抗和贝伐单抗)的结合通过石英晶体微量天平(QCM)表征。在最初选择的四个肽模拟表位中,命名为CN-14的肽(CGSGSGSWPRWLEN)对利妥昔单抗结合的选择性和敏感性最高。 CN-14 SAM的进一步特征是椭圆偏振和原子力显微镜。 CN-14 SAM膜的厚度约为32埃,并建议CN-14 SAM由CN-14肽之间的Arg-10和Glu-13的盐桥稳定。通过对CN-14肽序列进行一系列修饰来评估CN-14盐桥,并通过QCM对其进行表征。与CN-14相比,CN-14酰胺变体对利妥昔单抗产生更好的亲和力,而对选择性没有明显影响。随着CN-14 Glu残基的pK(a)增加,SAM与利妥昔单抗的亲和力增加,而选择性降低。这归因于在较高的Glu-13 pKa值下,CN-14 Arg-10与Glu-13之间的盐桥减弱。我们的研究表明,肽模拟物在传感器应用中具有潜在的优势,因为SAM中的肽-肽相互作用可以通过向肽中添加官能团以影响目标蛋白的结合来进行操纵。

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