Russian Research Center for Molecular Diagnostics and Therapy.
Acta Naturae. 2012 Jan;4(1):74-7.
The peptide conformation in the context of a protein polypeptide chain is influenced by proximal amino acid residues. However, the mechanisms of this interference remain poorly understood. We studied the conformation of angiotensins 1, 2 and 3, which are produced naturally in a sequential fashion from a precursor protein angiotensinogen and contain an identical peptide core structure. Using the example of angiotensins 1, 2 and 3, it was shown that similar amino acid sequences may have significant conformational differences in various molecules. In order to assess the conformational changes, we developed a panel of high-affinity mouse monoclonal antibodies against angiotensins 1, 2 and 3 and studied their cross-reactivity in indirect and competitive ELISAs. It was found that the conformations of inactive angiotensin1 and the corresponding fragment of angiotensinogen are similar; the same is true for the conformations of active angiotensins 2 and 3, whereas the conformations of homologous fragments in the active and inactive angiotensins differ significantly.
在蛋白质多肽链的背景下,肽构象受到邻近氨基酸残基的影响。然而,这种干扰的机制仍知之甚少。我们研究了血管紧张素 1、2 和 3 的构象,它们是从前体蛋白血管紧张素原按顺序自然产生的,含有相同的肽核心结构。以血管紧张素 1、2 和 3 为例,表明类似的氨基酸序列在不同的分子中可能具有显著的构象差异。为了评估构象变化,我们开发了一组针对血管紧张素 1、2 和 3 的高亲和力小鼠单克隆抗体,并在间接和竞争 ELISA 中研究了它们的交叉反应性。结果发现,无活性血管紧张素 1 和血管紧张素原相应片段的构象相似;活性血管紧张素 2 和 3 的构象也是如此,而活性和无活性血管紧张素中同源片段的构象则有显著差异。