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Engineering of site-directed antisera against vertebrate calmodulin by using synthetic peptide immunogens containing an immunoreactive site.

机译:通过使用含有免疫反应位点的合成肽免疫原,对脊椎动物钙调蛋白进行定点抗血清工程。

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摘要

Site-directed antisera against vertebrate calmodulin were elicited in rabbits by injection of a synthetic immunogen containing the pentadecapeptide Gly-Gln-Val-Asn-Tyr-Glu-Glu-Phe-Val-Gln-Met-Met-Thr-Ala-Lys-OH, which corresponds to residues 134-148 of vertebrate calmodulin. A major immunoreactive region (residues 127-144) of calmodulin is found in the COOH-terminal structural domain and an immunoreactive site for one antiserum is contained in the heptapeptide Asn-Tyr-Glu-Glu-Phe-Val-Gln-NH2, which corresponds to residues 137-143 of vertebrate calmodulin. This immunoreactive heptapeptide was conjugated to a carrier protein by adding a cysteine residue to the NH2 terminus of the peptide and coupling the Cys-heptapeptide to the carrier through the thiol group of the cysteine residue. Injection of this Cys-heptapeptide-protein conjugate into rabbits yielded antisera that react with the heptapeptide but not with native calmodulin. Thus, the immunoreactive heptapeptide that is exposed on the surface of calmodulin is immunogenic, but it is not sufficient to elicit antibodies that react with native calmodulin. However, when the Cys-pentadecapeptide corresponding to residues 134-148 and containing the immunoreactive heptapeptide sequence was conjugated to a carrier protein and injected into rabbits, antisera were elicited that react with the intact calmodulin molecule. The affinities and specificities of these antisera for calmodulin are similar to those of antisera elicited by injection of the intact protein and are sufficient for their use in radioimmunoassays. These results indicate that the successful engineering of site-directed antisera against proteins by using synthetic peptide immunogens may require an appropriate intramolecular environment that allows the peptide region to closely approximate the spatial orientation it adopts in the intact protein.
机译:通过注射含有五肽Gly-Gln-Val-Asn-Tyr-Glu-Glu-Phe-Val-Gln-Met-Met-Thr-Ala-Lys- OH,其对应于脊椎动物钙调蛋白的残基134-148。在COOH末端的结构域中发现了钙调蛋白的主要免疫反应区(残基127-144),并且七肽Asn-Tyr-Glu-Glu-Plu-Val-Gln-NH2中包含一个抗血清的免疫反应位点,对应于脊椎动物钙调蛋白的残基137-143。通过将半胱氨酸残基添加至肽的NH 2末端并使Cys-七肽通过半胱氨酸残基的巯基偶联至载体,从而将该免疫反应性七肽与载体蛋白缀合。将此Cys-七肽-蛋白质偶联物注射到兔体内可产生与七肽反应但与天然钙调蛋白不反应的抗血清。因此,暴露于钙调蛋白表面的免疫反应性七肽具有免疫原性,但不足以引发与天然钙调蛋白反应的抗体。然而,当将对应于残基134-148并含有免疫反应性七肽序列的Cys-十五肽与载体蛋白缀合并注射到兔中时,会引发与完整的钙调蛋白分子反应的抗血清。这些抗血清对钙调蛋白的亲和力和特异性与注射完整蛋白引起的抗血清的亲和力和特异性相似,足以在放射免疫分析中使用。这些结果表明,通过使用合成肽免疫原成功地针对蛋白质进行定点抗血清工程改造,可能需要一个合适的分子内环境,该环境应使肽区域接近其在完整蛋白中所采用的空间方向。

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