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Heparin Induces Harmless Fibril Formation in Amyloidogenic W7FW14F Apomyoglobin and Amyloid Aggregation in Wild-Type Protein In Vitro

机译:肝素诱导淀粉样生成的W7FW14F肌红蛋白中无害的原纤维形成和野生型蛋白的淀粉样蛋白聚集体外。

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摘要

Glycosaminoglycans (GAGs) are frequently associated with amyloid deposits in most amyloid diseases, and there is evidence to support their active role in amyloid fibril formation. The purpose of this study was to obtain structural insight into GAG-protein interactions and to better elucidate the molecular mechanism underlying the effect of GAGs on the amyloid aggregation process and on the related cytotoxicity. To this aim, using Fourier transform infrared and circular diochroism spectroscopy, electron microscopy and thioflavin fluorescence dye we examined the effect of heparin and other GAGs on the fibrillogenesis and cytotoxicity of aggregates formed by the amyloidogenic W7FW14 apomyoglobin mutant. Although this protein is unrelated to human disease, it is a suitable model for in vitro studies because it forms amyloid-like fibrils under physiological conditions of pH and temperature. Heparin strongly stimulated aggregation into amyloid fibrils, thereby abolishing the lag-phase normally detected following the kinetics of the process, and increasing the yield of fibrils. Moreover, the protein aggregates were harmless when assayed for cytotoxicity in vitro. Neutral or positive compounds did not affect the aggregation rate, and the early aggregates were highly cytotoxic. The surprising result that heparin induced amyloid fibril formation in wild-type apomyoglobin and in the partially folded intermediate state of the mutant, i.e., proteins that normally do not show any tendency to aggregate, suggested that the interaction of heparin with apomyoglobin is highly specific because of the presence, in protein turn regions, of consensus sequences consisting of alternating basic and non-basic residues that are capable of binding heparin molecules. Our data suggest that GAGs play a dual role in amyloidosis, namely, they promote beneficial fibril formation, but they also function as pathological chaperones by inducing amyloid aggregation.
机译:糖胺聚糖(GAG)在大多数淀粉样疾病中通常与淀粉样沉积物有关,并且有证据支持它们在淀粉样原纤维形成中的积极作用。这项研究的目的是获得有关GAG-蛋白质相互作用的结构性见解,并更好地阐明GAG对淀粉样蛋白聚集过程和相关细胞毒性的影响的分子机制。为此,我们使用傅里叶变换红外光谱和圆二色光谱,电子显微镜和硫黄素荧光染料检查了肝素和其他GAG对由淀粉样蛋白产生的W7FW14 apomyoglobin突变体形成的聚集体的原纤维形成和细胞毒性的影响。尽管该蛋白与人类疾病无关,但是由于它在pH和温度的生理条件下会形成淀粉样蛋白原纤维,因此它是适合体外研究的模型。肝素强烈刺激聚集成淀粉样蛋白原纤维,从而消除了通常根据该过程的动力学检测到的滞后相,并增加了原纤维的产率。此外,在体外测定细胞毒性时,蛋白质聚集体无害。中性或阳性化合物不影响聚集速率,早期聚集体具有高度细胞毒性。肝素在野生型apomyoglobin和突变体的部分折叠中间状态下诱导淀粉样蛋白原纤维形成的令人惊讶的结果表明,肝素与apomyoglobin的相互作用是高度特异性的,因为在蛋白质转折区中存在的共有序列,其由能够结合肝素分子的交替的碱性和非碱性残基组成。我们的数据表明,GAGs在淀粉样变性中起着双重作用,即它们促进了有益的原纤维形成,但它们也通过诱导淀粉样蛋白聚集而充当病理分子伴侣。

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