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胰岛淀粉样多肽非淀粉样生成区域的单个突变极大地降低了毒性。

A single mutation in the nonamyloidogenic region of islet amyloid polypeptide greatly reduces toxicity.

作者信息

Brender Jeffrey R, Hartman Kevin, Reid Kendra R, Kennedy Robert T, Ramamoorthy Ayyalusamy

机构信息

Department of Chemistry and Biophysics, University of Michigan, Ann Arbor, Michigan 48109-1055, USA.

出版信息

Biochemistry. 2008 Dec 2;47(48):12680-8. doi: 10.1021/bi801427c.

Abstract

Islet amyloid polypeptide (IAPP or amylin) is a 37-residue peptide secreted with insulin by beta-cells in the islets of Langerhans. The aggregation of the peptide into either amyloid fibers or small soluble oligomers has been implicated in the death of beta-cells during type 2 diabetes through disruption of the cellular membrane. The actual form of the peptide responsible for beta-cell death has been a subject of controversy. Previous research has indicated that the N-terminal region of the peptide (residues 1-19) is primarily responsible for the membrane-disrupting effect of the hIAPP peptide and induces membrane disruption to a similar extent as the full-length peptide without forming amyloid fibers when bound to the membrane. The rat version of the peptide, which is both noncytotoxic and nonamyloidogenic, differs from the human peptide by only one amino acid residue: Arg18 in the rat version while His18 in the human version. To elucidate the effect of this difference, we have measured in this study the effects of the rat and human versions of IAPP(1-19) on islet cells and model membranes. Fluorescence microscopy shows a rapid increase in intracellular calcium levels of islet cells after the addition of hIAPP(1-19), indicating disruption of the cellular membrane, while the rat version of the IAPP(1-19) peptide is significantly less effective. Circular dichroism experiments and dye leakage assays on model liposomes show that rIAPP(1-19) is deficient in binding to and disrupting lipid membranes at low but not at high peptide to lipid ratios, indicating that the ability of rIAPP(1-19) to form small aggregates necessary for membrane binding and disruption is significantly less than hIAPP(1-19). At pH 6.0, where H18 is likely to be protonated, hIAPP(1-19) resembles rIAPP(1-19) in its ability to cause membrane disruption. Differential scanning calorimetry suggests a different mode of binding to the membrane for rIAPP(1-19) compared to hIAPP(1-19). Human IAPP(1-19) has a minimal effect on the phase transition of lipid vesicles, suggesting a membrane orientation of the peptide in which the mobility of the acyl chains of the membrane is relatively unaffected. Rat IAPP(1-19), however, has a strong effect on the phase transition of lipid vesicles at low concentrations, suggesting that the peptide does not easily insert into the membrane after binding to the surface. Our results indicate that the modulation of the peptide orientation in the membrane by His18 plays a key role in the toxicity of nonamyloidogenic forms of hIAPP.

摘要

胰岛淀粉样多肽(IAPP或胰淀素)是一种由胰岛β细胞与胰岛素一起分泌的含37个氨基酸残基的肽。该肽聚集成淀粉样纤维或小的可溶性寡聚体与2型糖尿病期间β细胞的死亡有关,其机制是破坏细胞膜。导致β细胞死亡的肽的实际形式一直存在争议。先前的研究表明,该肽的N端区域(第1-19位氨基酸残基)主要负责hIAPP肽的膜破坏作用,并且在与膜结合时,其诱导膜破坏的程度与全长肽相似,但不形成淀粉样纤维。大鼠版本的该肽既无细胞毒性也不形成淀粉样物质,与人类肽仅相差一个氨基酸残基:大鼠版本为Arg18,而人类版本为His18。为了阐明这种差异的影响,我们在本研究中测量了大鼠和人类版本的IAPP(1-19)对胰岛细胞和模型膜的影响。荧光显微镜显示,添加hIAPP(1-19)后,胰岛细胞内的钙水平迅速升高,表明细胞膜被破坏,而大鼠版本的IAPP(1-19)肽的效果明显较差。对模型脂质体进行的圆二色性实验和染料泄漏分析表明,在低肽与脂质比例下,rIAPP(1-19)在结合和破坏脂质膜方面存在缺陷,但在高比例时则不然,这表明rIAPP(1-19)形成膜结合和破坏所需的小聚集体的能力明显低于hIAPP(1-19)。在pH 6.0时,His18可能被质子化,此时hIAPP(1-19)在引起膜破坏的能力上类似于rIAPP(1-19)。差示扫描量热法表明,与hIAPP(1-19)相比,rIAPP(1-19)与膜结合的方式不同。人类IAPP(1-19)对脂质囊泡的相变影响最小,这表明该肽在膜中的取向使得膜酰基链的流动性相对未受影响。然而,大鼠IAPP(1-19)在低浓度时对脂质囊泡的相变有强烈影响,这表明该肽在与表面结合后不容易插入膜中。我们的结果表明,His18对膜中肽取向的调节在hIAPP非淀粉样形成形式的毒性中起关键作用。

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