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稳态收缩性肌动球蛋白网络中的标度行为。

Scaling behaviour in steady-state contracting actomyosin networks.

作者信息

Malik-Garbi Maya, Ierushalmi Niv, Jansen Silvia, Abu-Shah Enas, Goode Bruce L, Mogilner Alex, Keren Kinneret

机构信息

Department of Physics, Technion- Israel Institute of Technology, Haifa 32000, Israel.

Department of Biology, Brandeis University, Waltham, MA, USA.

出版信息

Nat Phys. 2019 May;15(5):509-516. doi: 10.1038/s41567-018-0413-4. Epub 2019 Feb 4.

Abstract

Contractile actomyosin network flows are crucial for many cellular processes including cell division and motility, morphogenesis and transport. How local remodeling of actin architecture tunes stress production and dissipation and regulates large-scale network flows remains poorly understood. Here, we generate contracting actomyosin networks with rapid turnover , by encapsulating cytoplasmic egg extracts into cell-sized 'water-in-oil' droplets. Within minutes, the networks reach a dynamic steady-state with continuous inward flow. The networks exhibit homogeneous, density-independent contraction for a wide range of physiological conditions, implying that the myosin-generated stress driving contraction and the effective network viscosity have similar density dependence. We further find that the contraction rate is roughly proportional to the network turnover rate, but this relation breaks down in the presence of excessive crosslinking or branching. Our findings suggest that cells use diverse biochemical mechanisms to generate robust, yet tunable, actin flows by regulating two parameters: turnover rate and network geometry.

摘要

收缩性肌动球蛋白网络流动对于许多细胞过程至关重要,包括细胞分裂与运动、形态发生和运输。肌动蛋白结构的局部重塑如何调节应力产生与消散并调控大规模网络流动,目前仍知之甚少。在此,我们通过将细胞质卵提取物封装到细胞大小的“油包水”液滴中,生成了具有快速周转的收缩性肌动球蛋白网络。数分钟内,网络达到动态稳态并伴有持续的向内流动。在广泛的生理条件下,网络呈现出均匀的、与密度无关的收缩,这意味着肌球蛋白产生的驱动收缩的应力与有效的网络粘度具有相似的密度依赖性。我们进一步发现,收缩速率大致与网络周转速率成正比,但在存在过多交联或分支的情况下,这种关系会失效。我们的研究结果表明,细胞通过调节两个参数:周转速率和网络几何结构,利用多种生化机制来产生稳健且可调的肌动蛋白流动。

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