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Controlling Actin Motility on Microfabricated Linear Channels

机译:控制微制造线性通道上的肌动蛋白运动

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Heavy meromyosin (HMM), a proteolytically cleaved derivative of myosin has previously been shown to interact with actin in well-established in vitro motility assays on nitrocellulose surfaces. In this study, the assays were conducted to demonstrate that the motility of actin filaments is confined in the micron-sized channels fabricated via laser ablation in a layer of a photosensitive resist polymer O-acryloyloxime acetophenone oxime (AAPO). A solution containing myosin labelled with fluorophore 5-iodoacetamidofluorescein (5-IAF) was applied to the microfabricated AAPO surface and shown to bind specifically to the micron-size channels. In the motility assay, HMM, rhodamine-phalloidin labelled actin and ATP were sequentially added and the movement of the actin filaments was observed by fluorescence microscopy and recorded with a CCD camera. The experiments prove that although the actin filaments show an only-partial propensity for attachment in myosin-rich areas, their motility is confined to a large extent in micro-channels.
机译:重梅多多芬(HMM),先前已被证明肌蛋白的蛋白水溶性切割衍生物与偶氮纤维素表面的体外运动测定良好的肌动蛋白相互作用。在该研究中,进行了测定以证明肌动蛋白长丝的动力被限制在通过激光灭菌聚合物O-丙烯酰肟肟肟(AAPO)层中通过激光烧蚀制造的微米尺寸通道。将含有用荧光团5-碘酰胺氟荧光素(5-IAF)标记的霉菌素的溶液施加到微制造的AAPO表面上并显示为特别粘合到微米尺寸通道。在动力测定中,依次加入HMM,罗丹明-Phalloidin标记的肌动蛋白和ATP,并通过荧光显微镜观察肌动蛋白细丝的运动,并用CCD相机记录。实验证明,虽然肌动蛋白长丝显示富含菌丝素的地区的附着唯一的附着倾向,但它们的动力在很大程度上局限于微通道。

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