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Hitching a Ride: Mechanics of Transport Initiation through Linker-Mediated Hitchhiking

机译:搭便车:通过接头介导的搭便车运输启动力学

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摘要

In contrast to the canonical picture of transport by direct attachment to motor proteins, recent evidence shows that a number of intracellular “cargos” navigate the cytoplasm by hitchhiking on motor-driven “carrier” organelles. We describe a quantitative model of intracellular cargo transport via hitchhiking, examining the efficiency of hitchhiking initiation as a function of geometric and mechanical parameters. We focus specifically on the parameter regime relevant to the hitchhiking motion of peroxisome organelles in fungal hyphae. Our work predicts the dependence of transport initiation rates on the distribution of cytoskeletal tracks and carrier organelles, as well as the number, length, and flexibility of the linker proteins that mediate contact between the carrier and the hitchhiking cargo. Furthermore, we demonstrate that attaching organelles to microtubules can result in a substantial enhancement of the hitchhiking initiation rate in tubular geometries such as those found in fungal hyphae. This enhancement is expected to increase the overall transport rate of hitchhiking organelles and lead to greater efficiency in organelle dispersion. Our results leverage a quantitative physical model to highlight the importance of organelle encounter dynamics in noncanonical intracellular transport.
机译:与通过直接附着到电机蛋白的传输的规范图片相反,最近的证据表明,许多细胞内的“Cargos”通过在电动机驱动的“载体”细胞器上通过搭便车来导航细胞质。我们通过搭便车描述细胞内货物运输的定量模型,检查搭便车启动的效率作为几何和机械参数的函数。我们专注于与真菌菌丝过氧化物酶机细胞器的搭便车运动相关的参数制度。我们的作品预测了运输起始率对细胞骨骼轨道和载体细胞器分布的依赖性,以及连接蛋白的连接蛋白的数量,长度和柔韧性,该蛋白质在载体和搭乘货物之间介导接触。此外,我们证明将细胞器附着到微管中,可以显着提高管状几何形状的搭便率启动率,例如真菌菌丝中发现的那些。这种增强预计将增加搭便车的细胞器的整体运输速率,并导致细胞器分散的更大效率。我们的结果利用定量物理模型来突出细胞器遇到动力学在非甘露话的细胞内运输中的重要性。

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