Mezö Gábor, de Oliveira Eliandre, Krikorian Dimitrios, Feijlbrief Matty, Jakab Annamária, Tsikaris Vassilios, Sakarellos Constantinos, Welling-Wester Sytske, Andreu David, Hudecz Ferenc
Research Group of Peptide Chemistry, Hungarian Academy of Sciences, Eötvös L. University, Budapest 112, P.O. Box 32, H-1518, Hungary.
Bioconjug Chem. 2003 Nov-Dec;14(6):1260-9. doi: 10.1021/bc0341122.
Synthetic oligopeptides comprising linear or continuous topographic B-cell epitope sequences of proteins might be considered as specific and small size antigens. It has been demonstrated that the strength and specificity of antibody binding could be altered by conjugation to macromolecules or by modification in the flanking regions. However, no systematic studies have been reported to describe the effect of different carrier macromolecules in epitope conjugates. To this end, the influence of carrier structure and topology on antibody recognition of attached epitope has been studied by comparing the antibody binding properties of a new set of conjugates with tetratuftsin analogue (H-Thr-Lys-Pro-Lys-Gly-NH(2), T20) sequential oligopeptide carrier (SOC(n)), branched chain polypeptide, poly[Lys(Ser(i)-DL-Ala(m))] (SAK), multiple antigenic peptide (MAP), and keyhole limpet hemocyanine (KLH). In these novel constructs, peptide (9)LKNleADPNRFRGKDL(22) ([Nle(11)]-9-22) representing an immunodominant B cell epitope of herpes simplex virus type 1 glycoprotein D (HSV-1 gD) was conjugated to polypeptides through a thioether or amide bond. Here we report on the preparation of sequential and polymeric polypeptides possessing chloroacetyl groups in multiple copies at the alpha- and/or epsilon-amino group of the polypeptides and its use for the conjugation of epitope peptides possessing Cys at C-terminal position. We have performed binding studies (direct and competitive ELISA) with monoclonal antibody (Mab) A16, recognizing the HSV gD-related epitope, [Nle(11)]-9-22, and conjugates containing identical and uniformly oriented epitope peptide in multiple copies attached to five different macromolecules as carrier. Data suggest that the chemical nature of the carrier and the degree of substitution have marked influence on the strength of antibody binding.
包含蛋白质线性或连续构象B细胞表位序列的合成寡肽可被视为特异性的小尺寸抗原。已经证明,通过与大分子缀合或在侧翼区域进行修饰,可以改变抗体结合的强度和特异性。然而,尚未有系统研究报道不同载体大分子在表位缀合物中的作用。为此,通过比较一组新的缀合物与四肽促吞噬素类似物(H-苏氨酸-赖氨酸-脯氨酸-赖氨酸-甘氨酸-NH(2),T20)顺序寡肽载体(SOC(n))、支链多肽、聚[赖氨酸(丝氨酸(i)-DL-丙氨酸(m))](SAK)、多抗原肽(MAP)和钥孔血蓝蛋白(KLH)的抗体结合特性,研究了载体结构和拓扑对附着表位抗体识别的影响。在这些新型构建体中,代表单纯疱疹病毒1型糖蛋白D(HSV-1 gD)免疫显性B细胞表位的肽(9)LKNleADPNRFRGKDL(22)([Nle(11)]-9-22)通过硫醚键或酰胺键与多肽缀合。本文报道了在多肽的α-和/或ε-氨基处具有多个拷贝氯乙酰基的顺序和聚合多肽的制备及其用于缀合在C末端位置具有半胱氨酸的表位肽的用途。我们用识别HSV gD相关表位[Nle(11)]-9-22的单克隆抗体(Mab)A16以及含有多个拷贝相同且方向一致的表位肽并附着于五种不同大分子作为载体的缀合物进行了结合研究(直接和竞争性ELISA)。数据表明,载体的化学性质和取代程度对抗体结合强度有显著影响。