首页> 外文期刊>Chembiochem: A European journal of chemical biology >Using the peptide Bp100 as a cell-penetrating tool for the chemical engineering of actin filaments within living plant cells
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Using the peptide Bp100 as a cell-penetrating tool for the chemical engineering of actin filaments within living plant cells

机译:使用Bp100肽作为细胞穿透工具来对植物活细胞内肌动蛋白丝进行化学工程

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The delivery of externally applied macromolecules or nanoparticles into living cells still represents a critically limiting step before the full capabilities of chemical engineering can be explored. Molecular transporters such as cell-penetrating peptides, peptoids, and other mimetics can be used to carry cargo across the cellular membrane, but it is still difficult to find suitable sequences that operate efficiently for any particular type of cell. Here we report that BP100 (KKLFKKILKYL-amide), originally designed as an antimicrobial peptide against plant pathogens, can be employed as a fast and efficient cell-penetrating agent to transport fluorescent test cargoes into the cytosol of walled plant cells. The uptake of BP100 proceeds slightly more slowly than the endocytosis of fluorescent dextranes, but BP100 accumulates more efficiently and to much higher levels (by an order of magnitude). The entry of BP100 can be efficiently blocked by latrunculin B; this suggests that actin filaments are essential to the uptake mechanism. To test whether this novel transporter can also be used to deliver functional cargoes, we designed a fusion construct of BP100 with the actin-binding Lifeact peptide (MGVADLIKKFESISKEE). We demonstrated that the short BP100 could transport the attached 17-residue sequence quickly and efficiently into tobacco cells. The Lifeact construct retained its functionality as it successfully labeled the actin bundles that tether the nucleus in the cell center.Planted in plants: The cell-penetrating peptide BP100 has successfully been employed as a carrier for external delivery of the Lifeact peptide. Once inside the cell the Rhodamine B-Lifeact-BP100 construct labeled transvacuolar actin cables that tether the nucleus in the cell center.
机译:在探索化学工程的全部功能之前,将外部应用的大分子或纳米颗粒递送到活细胞中仍然是关键的限制步骤。诸如细胞穿透肽,类肽和其他模拟物之类的分子转运蛋白可用于将货物运送穿过细胞膜,但是仍然很难找到对任何特定类型的细胞有效运行的合适序列。在这里我们报告说,最初设计为针对植物病原体的抗菌肽BP100(KKLFKKILKYL-酰胺)可以用作快速有效的细胞穿透剂,以将荧光测试物质转运到壁植物细胞的细胞质中。 BP100的吸收过程比荧光右旋糖酐的内吞作用稍微慢一些,但BP100的积累效率更高,水平更高(一个数量级)。 latrunculin B可以有效地阻止BP100的进入。这表明肌动蛋白丝对摄取机制至关重要。为了测试这种新型转运蛋白是否也可以用于递送功能性货物,我们设计了BP100与肌动蛋白结合型Lifeact肽(MGVADLIKKFESISKEE)的融合构建体。我们证明了短的BP100可以将附着的17个残基序列快速有效地转运到烟草细胞中。 Lifeact构建体成功地标记了束缚细胞中心细胞核的肌动蛋白束,因此保留了其功能性。在植物中种植:穿透细胞的肽BP100已成功地用作Lifeact肽对外传递的载体。一旦进入细胞内,若丹明B-Lifeact-BP100构建体就将标记的跨血管肌动蛋白电缆束缚在细胞中心的核中。

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