Suppr超能文献

环状 Ras 抑制剂肽的构象可塑性决定其细胞渗透活性。

Conformational Plasticity of Cyclic Ras-Inhibitor Peptides Defines Cell Permeabilization Activity.

机构信息

Cellular and Molecular Biotechnology Research Institute, National Institute of Advanced Industrial Science and Technology, 2-3-26 Aomi, Koto, Tokyo, 135-0063, Japan.

Japan Biological Informatics Consortium, 2-3-26 Aomi, Koto, Tokyo, 135-0063, Japan.

出版信息

Angew Chem Int Ed Engl. 2021 Mar 15;60(12):6567-6572. doi: 10.1002/anie.202016647. Epub 2021 Feb 16.

Abstract

Cyclorasins 9A5 and 9A54 are 11-mer cyclic peptides that inhibit the Ras-Raf protein interaction. The peptides share a cell-penetrating peptide (CPP)-like motif; however, only cyclorasin 9A5 can permeabilize cells to exhibit strong cell-based activity. To unveil the structural origin underlying their distinct cellular permeabilization activities, we compared the three-dimensional structures of cyclorasins 9A5 and 9A54 in water and in the less polar solvent dimethyl sulfoxide (DMSO) by solution NMR. We found that cyclorasin 9A5 changes its extended conformation in water to a compact amphipathic structure with converged aromatic residues surrounded by Arg residues in DMSO, which might contribute to its cell permeabilization activity. However, cyclorasin 9A54 cannot adopt this amphipathic structure, due to the steric hindrance between two neighboring bulky amino-acid sidechains, Tle-2 and dVal-3. We also found that the bulkiness of the sidechains at positions 2 and 3 negatively affects the cell permeabilization activities, indicating that the conformational plasticity that allows the peptides to form the amphipathic structure is important for their cell permeabilization activities.

摘要

环拉辛 9A5 和 9A54 是 11 肽环肽,可抑制 Ras-Raf 蛋白相互作用。这些肽共享一个细胞穿透肽(CPP)样基序;然而,只有环拉辛 9A5 能够穿透细胞并表现出很强的基于细胞的活性。为了揭示它们不同的细胞穿透活性的结构起源,我们通过溶液 NMR 比较了环拉辛 9A5 和 9A54 在水中和极性较小的二甲基亚砜(DMSO)中的三维结构。我们发现环拉辛 9A5 在水中从扩展构象转变为在 DMSO 中具有收敛芳香残基的紧凑两亲性结构,Arg 残基环绕,这可能有助于其细胞穿透活性。然而,环拉辛 9A54 不能采用这种两亲性结构,因为两个相邻大侧链 Tle-2 和 dVal-3 之间存在空间位阻。我们还发现,位置 2 和 3 上侧链的体积会对细胞穿透活性产生负面影响,这表明允许肽形成两亲性结构的构象灵活性对其细胞穿透活性很重要。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验