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首页> 外文期刊>The Journal of biological chemistry >Cross-seeding of alpha-synuclein aggregation by amyloid fibrils of food proteins
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Cross-seeding of alpha-synuclein aggregation by amyloid fibrils of food proteins

机译:食品蛋白淀粉样蛋白原纤维蛋白聚集α-突触核蛋白聚集的交叉播种

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The aggregation of the protein α-synuclein (aSyn) into amyloid fibrils in the human brain is associated with the development of several neurodegenerative diseases, including Parkinson's disease. The previously observed prion-like spreading of aSyn aggregation throughout the brain and the finding that heterologous cross-seeding of amyloid aggregation occurs in?vitro for some proteins suggest that exposure to amyloids in general may pose a risk for disease development. To elucidate which protein fibril characteristics determine if and how heterologous amyloid seeding can occur, we investigated the potential of amyloid fibrils formed from proteins found in food, hen egg white lysozyme, and bovine milk β-lactoglobulin to cross-seed aSyn aggregation in the test tube. We observed that amyloid fibrils from lysozyme, but not β-lactoglobulin, potently cross-seeded the aggregation of aSyn as indicated by a significantly shorter lag phase of aSyn aggregation in the presence of lysozyme fibrils. The cross-seeding effect of lysozyme was found to be primarily driven by a surface-mediated nucleation mechanism. The differential seeding effect of lysozyme and β-lactoglobulin on aSyn aggregation could be explained on the basis of binding affinity, binding site, and electrostatic interactions. Our results indicate that heterologous seeding of proteins may occur depending on the physicochemical characteristics of the seed protein fibril. Our findings suggest that heterologous seeding has the potential to determine the pathogenesis of neurodegenerative amyloid diseases.
机译:蛋白α突触核蛋白(ASYN)成淀粉样原纤维在人脑中的聚集与几种神经变性疾病,包括帕金森氏病的发展相关联。对于一些蛋白质表明,暴露于一般淀粉状蛋白可能会造成疾病的发展风险之前观察的朊病毒样整个大脑和淀粉样蛋白聚集的是异源交播种发现ASYN聚集的传播发生在?体外。为了阐明该蛋白的原纤维的特性确定是否和淀粉样蛋白如何异源接种,可能会发生,我们研究了从蛋白形成淀粉样蛋白原纤维的电位在食品,​​鸡蛋白溶菌酶和牛奶β乳球蛋白发现交种子ASYN聚集在测试管子。我们观察到淀粉样原纤维从溶菌酶,但不β乳球蛋白,有效地交叉接种ASYN的聚集通过溶菌酶原纤维的存在下聚合ASYN的显著较短的滞后相所指示的。发现溶菌酶的横接种效果通过表面介导的成核机理被主要驱动。差动播种溶菌酶和ASYN聚合β乳球蛋白的效应可能的结合亲和力,结合位点,和静电相互作用的基础上进行说明。我们的研究结果表明,取决于种子蛋白质原纤维的物理化学特性,可能会发生的蛋白质的异源播种。我们的研究结果表明,外源播种已确定神经变性淀粉样疾病的发病的可能性。

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