Krampert M, Bernhagen J, Schmucker J, Horn A, Schmauder A, Brunner H, Voelter W, Kapurniotu A
Physiological-Chemical Institute, University of Tübingen, Tübingen, Germany.
Chem Biol. 2000 Nov;7(11):855-71. doi: 10.1016/s1074-5521(00)00034-x.
Pancreatic amyloid has been associated with type II diabetes. The major constituent of pancreatic amyloid is the 37-residue peptide islet amyloid polypeptide (IAPP). IAPP is expressed as a 67-residue pro-peptide called ProIAPP which is processed to IAPP following stimulation. While the molecular events underlying IAPP amyloid formation in vitro have been studied, little is known about the role of ProIAPP in the formation of pancreatic amyloid. This has been due in part to the limited availability of purified ProIAPP for conformational and biochemical studies.
We present a method for efficient recombinant expression and purification of ProIAPP and a processing site mutant, mutProIAPP, as thioredoxin (Trx) fusion proteins. Conformation and amyloidogenicity of cleaved ProIAPP and mutProIAPP and the fusion proteins were assessed by circular dichroism, electron microscopy and Congo red staining. We find that ProIAPP and mutProIAPP exhibit strong self-association potentials and are capable of forming amyloid. However, the conformational transitions of ProIAPP and mutProIAPP during aging and amyloidogenesis are distinct from the random coil-to-beta-sheet transition of IAPP. Both proteins are found to be less amyloidogenic than IAPP and besides fibrils a number of non-fibrillar but ordered aggregates form during aging of ProIAPP. ProIAPP aggregates are cytotoxic on pancreatic cells but less cytotoxic than IAPP while mutProIAPP aggregates essentially lack cytotoxicity. The Trx fusion proteins are neither amyloidogenic nor cytotoxic.
Our studies suggest that ProIAPP has typical properties of an amyloidogenic polypeptide but also indicate that the pro-region suppresses the amyloidogenic and cytotoxic potentials of IAPP.
胰腺淀粉样蛋白与II型糖尿病有关。胰腺淀粉样蛋白的主要成分是37个氨基酸残基的肽胰岛淀粉样多肽(IAPP)。IAPP以一种名为ProIAPP的67个氨基酸残基的前体肽形式表达,在受到刺激后被加工成IAPP。虽然已经对体外IAPP淀粉样蛋白形成的分子事件进行了研究,但对于ProIAPP在胰腺淀粉样蛋白形成中的作用知之甚少。这部分是由于用于构象和生化研究的纯化ProIAPP的可用性有限。
我们提出了一种高效重组表达和纯化ProIAPP以及一个加工位点突变体mutProIAPP的方法,它们作为硫氧还蛋白(Trx)融合蛋白。通过圆二色性、电子显微镜和刚果红染色评估切割后的ProIAPP和mutProIAPP以及融合蛋白的构象和淀粉样变性。我们发现ProIAPP和mutProIAPP表现出很强的自我缔合潜力,并且能够形成淀粉样蛋白。然而,ProIAPP和mutProIAPP在老化和淀粉样蛋白形成过程中的构象转变与IAPP从无规卷曲到β-折叠的转变不同。发现这两种蛋白质的淀粉样变性都比IAPP小,并且在ProIAPP老化过程中,除了纤维之外还形成了许多非纤维状但有序的聚集体。ProIAPP聚集体对胰腺细胞具有细胞毒性,但比IAPP的细胞毒性小,而mutProIAPP聚集体基本上没有细胞毒性。Trx融合蛋白既没有淀粉样变性也没有细胞毒性。
我们的研究表明ProIAPP具有淀粉样变性多肽的典型特性,但也表明前体区域抑制了IAPP的淀粉样变性和细胞毒性潜力。