Kallijärvi J, Haltia M, Baumann M H
Protein Chemistry Unit, Institute of Biomedicine, Biomedicum Helsinki, P.O. Box 63, FIN-00014 University of Helsinki, Finland.
Biochemistry. 2001 Aug 28;40(34):10032-7. doi: 10.1021/bi002095n.
Many of the proteins associated with amyloidoses have been found to share structural and sequence similarities, which are believed to be responsible for their capability to form amyloid fibrils. Interestingly, some proteins seem to be able to form amyloid-like fibrils although they are not associated with amyloidoses. This indicates that the ability to form amyloid fibrils may be a general property of a greater number of proteins not associated with these diseases. In the present work, we have searched for amyloidogenic consensus sequences in two current protein/peptide databases and show that many proteins share structures which can be predicted to form amyloid. One of these potentially amyloidogenic proteins is amphoterin (also known as HMG-1), involved in neuronal development and a ligand for the receptor for advanced glycation end products (RAGE). It contains an amyloidogenic peptide fragment which is highly homologous to the Alzheimer's amyloid beta-peptide. If enzymatically released from the native protein, it forms amyloid-like fibrils which are visible in electron microscopy, exhibit apple green birefringence under polarized light after Congo red staining, and increases thioflavin T fluorescence. This fragment also shows high affinity to Abeta as a free peptide or while part of the native protein. Our results support the hypothesis that the potential to form amyloid is a common characteristic of a number of proteins, independent of their relation to amyloidoses, and that this potential can be predicted based on the physicochemical properties of these proteins.
许多与淀粉样变性相关的蛋白质已被发现具有结构和序列相似性,据信这些相似性是它们形成淀粉样纤维能力的原因。有趣的是,一些蛋白质似乎能够形成类淀粉样纤维,尽管它们与淀粉样变性无关。这表明形成淀粉样纤维的能力可能是大量与这些疾病无关的蛋白质的普遍特性。在本研究中,我们在两个当前的蛋白质/肽数据库中搜索了淀粉样生成共有序列,并表明许多蛋白质具有可预测形成淀粉样结构的结构。其中一种潜在的淀粉样生成蛋白是两性调节蛋白(也称为HMG-1),它参与神经元发育,是晚期糖基化终产物受体(RAGE)的配体。它包含一个与阿尔茨海默病淀粉样β肽高度同源的淀粉样生成肽片段。如果从天然蛋白质中酶解释放出来,它会形成在电子显微镜下可见的类淀粉样纤维,在刚果红染色后在偏振光下呈现苹果绿双折射,并增加硫黄素T荧光。该片段作为游离肽或作为天然蛋白质的一部分时,对Aβ也显示出高亲和力。我们的结果支持这样的假设,即形成淀粉样的潜力是许多蛋白质的共同特征,与它们与淀粉样变性的关系无关,并且这种潜力可以根据这些蛋白质的物理化学性质来预测。