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肌球蛋白 V 在微管上的扩散:一种精细调节的相互作用,其中 E 钩是可有可无的。

Diffusion of myosin V on microtubules: a fine-tuned interaction for which E-hooks are dispensable.

机构信息

Institute for Anatomy and Cell Biology, Ludwig-Maximilians-University of Munich, Munich, Germany.

出版信息

PLoS One. 2011;6(9):e25473. doi: 10.1371/journal.pone.0025473. Epub 2011 Sep 26.

Abstract

Organelle transport in eukaryotes employs both microtubule and actin tracks to deliver cargo effectively to their destinations, but the question of how the two systems cooperate is still largely unanswered. Recently, in vitro studies revealed that the actin-based processive motor myosin V also binds to, and diffuses along microtubules. This biophysical trick enables cells to exploit both tracks for the same transport process without switching motors. The detailed mechanisms underlying this behavior remain to be solved. By means of single molecule Total Internal Reflection Microscopy (TIRFM), we show here that electrostatic tethering between the positively charged loop 2 and the negatively charged C-terminal E-hooks of microtubules is dispensable. Furthermore, our data indicate that in addition to charge-charge interactions, other interaction forces such as non-ionic attraction might account for myosin V diffusion. These findings provide evidence for a novel way of myosin tethering to microtubules that does not interfere with other E-hook-dependent processes.

摘要

真核生物的细胞器运输既利用微管又利用肌动蛋白轨道将货物有效地运送到目的地,但两个系统如何合作的问题仍未得到解答。最近,体外研究表明,基于肌动蛋白的运动性马达肌球蛋白 V 也能与微管结合,并沿微管扩散。这种生物物理技巧使细胞能够在不切换马达的情况下,利用两条轨道进行相同的运输过程。这种行为背后的详细机制仍有待解决。通过单分子全内反射显微镜 (TIRFM),我们在这里表明,微管的正电荷环 2 和负电荷 C 末端 E 钩之间的静电束缚是可有可无的。此外,我们的数据表明,除了电荷-电荷相互作用外,其他相互作用力,如非离子吸引,可能解释了肌球蛋白 V 的扩散。这些发现为肌球蛋白与微管的一种新的连接方式提供了证据,这种连接方式不会干扰其他依赖 E 钩的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df1f/3180451/519fd151cb07/pone.0025473.g001.jpg

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