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Chemo-Mechanical Modulation of Cell Motions Using DNA Nanosprings

机译:使用DNA纳米螺母的细胞运动的化学机械调节

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摘要

Cell motions such as migration and change in cellular morphology are essential activities for multicellular organism in response to environmental stimuli. These activities are a result of coordinated clustering/declustering of integrin molecules at the cell membrane. Here, we prepared DNA origami nanosprings to modulate cell motions by targeting the clustering of integrin molecules. Each nanospring was modified with arginyl-glycyl-aspartic acid (RGD) domains with a spacing such that when the nanospring is coiled, the RGD ligands trigger the clustering of integrin molecules, which changes cell motions. The coiling or uncoiling of the nanospring is controlled, respectively, by the formation or dissolution of an i-motif structure between neighboring piers in the DNA origami nanodevice. At slightly acidic pH (<6.5), the folding of the i-motif leads to the coiling of the nanospring, which inhibits the motion of HeLa cells. At neutrality (pH 7.4), the unfolding of the i-motif allows cells to resume mechanical movement as the nanospring becomes uncoiled. We anticipate that this pH-responsive DNA nanoassembly is valuable to inhibit the migration of metastatic cancer cells in acidic extracellular environment. Such a chemo-mechanical modulation provides a new mechanism for cells to mechanically respond to endogenous chemical cues.
机译:细胞运动如迁移和细胞形态的变化是多细胞生物响应环境刺激的基本活性。这些活动是细胞膜整合素分子的协调/降解的结果。在这里,我们通过靶向整联蛋白分子的聚类来制备DNA折纸纳米蛋白来调节细胞运动。通过具有间隔的氨基 - 甘氨酸 - 天冬氨酸(RGD)结构域用氨基乙烯基 - 甘氨酸(RGD)结构域改性,使得当纳米刺轴盘绕时,RGD配体引发整联蛋白分子的聚类,这改变了细胞运动。通过在DNA折纸Nanodemice中的相邻桥墩之间的I-MOTIF结构的形成或溶解来控制纳米产物的卷绕或未损伤。在微酸性pH(<6.5)中,I-MOTIF的折叠导致纳米序列的卷曲,这抑制了HELA细胞的运动。在中性(pH7.4)处,I-MOTIF的展开允许细胞随着纳米喷射被挖掘而恢复机械运动。我们预期该pH响应性DNA纳米组件是有价值的,可抑制酸性细胞外环境中转移性癌细胞的迁移。这种化学机械调制为细胞提供了新机制,以机械地应对内源化学提示。

著录项

  • 来源
    《Bioconjugate Chemistry》 |2021年第2期|共7页
  • 作者单位

    Department of Chemistry &

    Biochemistry Kent State University;

    Department of Chemistry &

    Biochemistry Kent State University;

    Department of Chemistry &

    Biochemistry Kent State University;

    Frontier Research Institute for Interdisciplinary Sciences Tohoku University;

    Department of Robotics Graduate School of Engineering Tohoku University;

    Department of Chemistry &

    Biochemistry Kent State University;

    Department of Chemistry &

    Biochemistry Kent State University;

    Frontier Research Institute for Interdisciplinary Sciences Tohoku University;

    Department of Chemistry &

    Biochemistry Kent State University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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