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单量子点追踪显示,单个多价 HIV-1 Tat 蛋白转导结构域可以激活侧向转运和内吞作用的机制。

Single quantum dot tracking reveals that an individual multivalent HIV-1 Tat protein transduction domain can activate machinery for lateral transport and endocytosis.

机构信息

Department of Emerging Infectious Diseases, Graduate School of Medicine, Tohoku University, Sendai, Japan.

出版信息

Mol Cell Biol. 2013 Aug;33(15):3036-49. doi: 10.1128/MCB.01717-12. Epub 2013 Jun 3.

DOI:10.1128/MCB.01717-12
PMID:23732912
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3719669/
Abstract

The mechanisms underlying the cellular entry of the HIV-1 Tat protein transduction domain (TatP) and the molecular information necessary to improve the transduction efficiency of TatP remain unclear due to the technical limitations for direct visualization of TatP's behavior in cells. Using confocal microscopy, total internal reflection fluorescence microscopy, and four-dimensional microscopy, we developed a single-molecule tracking assay for TatP labeled with quantum dots (QDs) to examine the kinetics of TatP initially and immediately before, at the beginning of, and immediately after entry into living cells. We report that even when the number of multivalent TatP (mTatP)-QDs bound to a cell was low, each single mTatP-QD first locally induced the cell's lateral transport machinery to move the mTatP-QD toward the center of the cell body upon cross-linking of heparan sulfate proteoglycans. The centripetal and lateral movements were linked to the integrity and flow of actomyosin and microtubules. Individual mTatP underwent lipid raft-mediated temporal confinement, followed by complete immobilization, which ultimately led to endocytotic internalization. However, bivalent TatP did not sufficiently promote either cell surface movement or internalization. Together, these findings provide clues regarding the mechanisms of TatP cell entry and indicate that increasing the valence of TatP on nanoparticles allows them to behave as cargo delivery nanomachines.

摘要

由于直接观察 HIV-1 Tat 蛋白转导结构域(TatP)在细胞内行为的技术限制,TatP 进入细胞的机制以及提高 TatP 转导效率所需的分子信息尚不清楚。本研究使用共聚焦显微镜、全内反射荧光显微镜和四维显微镜,开发了一种标记量子点(QD)的 TatP 单分子跟踪测定法,以检查 TatP 进入活细胞前后的动力学。我们报告说,即使与细胞结合的多价 TatP(mTatP)-QD 的数量较少,当硫酸乙酰肝素蛋白聚糖交联时,每个单 mTatP-QD 首先会局部诱导细胞的横向运输机制将 mTatP-QD 移动到细胞体的中心。向心性和横向运动与肌动球蛋白和微管的完整性和流动有关。单个 mTatP 经历了脂筏介导的时间限制,随后完全固定,最终导致内吞内化。然而,二价 TatP 不能充分促进细胞表面的运动或内化。这些发现为 TatP 细胞进入的机制提供了线索,并表明增加纳米颗粒上 TatP 的价数可以使它们表现为货物递送纳米机器。

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