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首页> 外文期刊>Angewandte Chemie >Cross- Amyloid Nanohybrids Loaded With CytochromeC Exhibit Superactivity in Organic Solvents
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Cross- Amyloid Nanohybrids Loaded With CytochromeC Exhibit Superactivity in Organic Solvents

机译:跨淀粉样蛋白纳米杂化物负载细胞色素C在有机溶剂中表现出超强的活性

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摘要

The present study reports the development of a unique class of CytochromeC (CytC)-loaded cross-beta amyloid nanohybrids. The peroxidase activity of the bound CytC increased up to two orders of magnitude in organic solvents compared to the activity of unbound CytC in water. The amyloid sequences used in the study feature the nucleating core (LVFF21)-L-17 of the beta amyloid (A), which assembled to form homogenous fibers and nanotubes. The morphology and exposed surface of the amyloid nanohydrids critically modulated the CytC activity. A CytC-Ac-KLVFFAE-NH2 hybrid featuring nanofiber morphology showed 308-fold higher activity than unbound CytC in water, which increased to 450-fold with the nanotube morphology of CytC-Ac-KLVFFAL-NH2. Notably, activity declined substantially when the exposed surface charge was detuned by replacing lysine with histidine, thus underpinning the importance of surface charge. This enzyme-amyloid nanohybrid system could facilitate the technological application of enzymes.
机译:本研究报告了一种独特类型的细胞色素C(CytC)加载的交叉β淀粉样蛋白纳米杂化物的发展。与水中未结合的CytC的活性相比,结合的CytC的过氧化物酶活性在有机溶剂中增加了两个数量级。研究中使用的淀粉样蛋白序列具有β淀粉样蛋白(A)的核核心(LVFF21)-L-17,该核蛋白组装形成均质的纤维和纳米管。淀粉样蛋白纳米水合物的形态和暴露的表面关键地调节CytC活性。具有纳米纤维形态的CytC-Ac-KLVFFAE-NH2杂合体比未结合的CytC在水中的活性高308倍,随CytC-Ac-KLVFFAL-NH2的纳米管形态而增加到450倍。值得注意的是,当通过用组氨酸代替赖氨酸使暴露的表面电荷失谐时,活性显着下降,从而巩固了表面电荷的重要性。这种酶-淀粉样蛋白纳米杂化体系可以促进酶的技术应用。

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