Paterson Y
Biochemistry. 1985 Feb 12;24(4):1048-55. doi: 10.1021/bi00325a037.
Two regions of rodent cytochrome c, one within the first four residues of the molecule, which is N-acetylated, and one at a beta bend around residue 44, are known to be immunogenic and antigenic in rabbits. Using sequential peptide synthesis, we have determined the residues required for linear synthetic peptides within these sequences to bind to antibody raised in rabbits to intact rat cytochrome c. The residues that were important in binding the N-terminal peptides were N-acetylglycine at position 1 and valine at position 3. The smallest peptide sequence around residue 44 that would bind to antibodies was Gln-Ala-Ala-Gly-Phe. A theoretical conformational analysis of these peptides showed that the amino-terminal tetrapeptide adopts a wide statistical ensemble of conformational states and that the addition of residues beyond 41 and 45 in the other sequence does not appear to stabilize longer peptides in the native beta-bend conformation. Thus, the antigenicity conferred by Phe-46 and Gln-42 in this peptide is most likely due to the direct interaction of the side chains of these residues with the antibody binding site. The demonstration here that native conformation is not essential for antigenic peptides to bind to antibodies raised against the whole protein indicates that the association energy between antigen and antibody can be sufficient to induce conformation in conformationally flexible peptides. This supports the concept that anti-protein and anti-peptide antibodies may invoke conformational changes in cross-reactive protein antigens and may explain why longer peptides, which may adopt stable nonnative secondary structure, often do not bind to antibodies raised to the whole molecule.
啮齿动物细胞色素c的两个区域,一个在分子的前四个残基内,该区域是N - 乙酰化的,另一个在第44位残基附近的β转角处,已知在兔子体内具有免疫原性和抗原性。我们使用连续肽合成法,确定了这些序列中线性合成肽与针对完整大鼠细胞色素c的兔抗体结合所需的残基。在结合N端肽时起重要作用的残基是第1位的N - 乙酰甘氨酸和第3位的缬氨酸。能与抗体结合的第44位残基周围最小的肽序列是Gln - Ala - Ala - Gly - Phe。对这些肽进行的理论构象分析表明,氨基端四肽呈现出广泛的构象状态统计集合,并且在另一个序列中41位和45位以外残基的添加似乎并未使较长的肽稳定在天然β转角构象中。因此,该肽中Phe - 46和Gln - 42赋予的抗原性很可能是由于这些残基的侧链与抗体结合位点的直接相互作用。此处证明天然构象对于抗原肽与针对完整蛋白质产生的抗体结合并非必不可少,这表明抗原与抗体之间的缔合能足以在构象灵活的肽中诱导构象。这支持了抗蛋白质和抗肽抗体可能在交叉反应性蛋白质抗原中引发构象变化的概念,并可以解释为什么可能采用稳定非天然二级结构的较长肽通常不与针对整个分子产生的抗体结合。