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构象选择作为淀粉样β手性失活的驱动力。

Conformational Selection as the Driving Force of Amyloid β Chiral Inactivation.

机构信息

Department of Chemistry and Biochemistry, University of California Santa Cruz Physical Science Building 356, 1156 High Street, Santa Cruz, CA 95064, USA.

出版信息

Chembiochem. 2020 Oct 15;21(20):2945-2949. doi: 10.1002/cbic.202000237. Epub 2020 Jun 25.

Abstract

We recently introduced amyloid β chiral inactivation (Aβ-CI) as a molecular approach that uses mirror-image peptides to chaperone the natural Aβ stereoisomer into a less toxic state. The oligomer-to-fibril conversion mechanism remains the subject of active research. Perhaps the most striking feature of Aβ-CI is the virtual obliteration of the incubation/induction phase that is so characteristic of Aβ fibril formation kinetics. This qualitative change is indicative of the distinct mechanistic pathway Aβ-CI operates through. The current working model of Aβ-CI invokes the formation of "rippled" cross-β sheets, in which alternating l- and d-peptide strands form periodic networks. However, the assumption of rippled cross-β sheets does not per se explain the dramatic changes in reaction kinetics upon mixing of Aβ enantiomers. Herein, it is shown by DFT computational methods that the individual peptide strands in rippled cross-β networks are less conformationally strained than their pleated counterparts. This means that the adoption of fibril-seeding conformations is more probable for rippled cross-β. Conformational selection is thus suggested as the mechanistic rationale for the acceleration of fibril formation upon Aβ-CI.

摘要

我们最近提出了淀粉样蛋白β手性失活(Aβ-CI)作为一种分子方法,该方法使用镜像肽将天然 Aβ 对映异构体诱导为毒性较低的状态。寡聚物到纤维的转化机制仍然是活跃研究的主题。Aβ-CI 最显著的特点之一是几乎消除了 Aβ 纤维形成动力学中如此典型的孵育/诱导阶段。这种定性变化表明 Aβ-CI 所采用的机制途径是不同的。目前的 Aβ-CI 工作模型援引了“波纹”交叉-β 片层的形成,其中交替的 l-和 d-肽链形成周期性网络。然而,波纹交叉-β 片层的假设本身并不能解释 Aβ 对映异构体混合时反应动力学的巨大变化。本文通过 DFT 计算方法表明,波纹交叉-β 网络中的各个肽链的构象应变比折叠的对应物小。这意味着波纹交叉-β 更容易采用纤维成核构象。因此,构象选择被认为是 Aβ-CI 加速纤维形成的机制基础。

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