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The functionally distinct fission yeast formins have specific actin-assembly properties

机译:功能上不同的裂变酵母formins具有特定的肌动蛋白组装特性

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Fission yeast expresses three formins required for distinct actin cytoskeletal processes: Cdc12 (cytokinesis), For3 (polarization), and Fus1 (mating). We propose that in addition to differential regulation, key actin-assembly properties tailor formins for a particular role. In direct comparison to the well-studied Cdc12, we report the first in vitro characterization of the actin-assembly properties of For3 and Fus1. All three share fundamental formin activities; however, particular reaction rates vary significantly. Cdc12 is an efficient nucleator (one filament per approximately 3 Cdc12 dimers) that processively elongates profilin-actin at a moderate rate of 10 subunits s~(-1) μM~(-1), but lacks filament-bundling activity. Fus1 is also an efficient nucleator, yet processively elongates profilin-actin at one-half the rate of and dissociates 10-fold more rapidly than Cdc12; it also bundles filaments. For3 nucleates filaments 100-fold less well than Fus1, but like Cdc12, processively elongates profilin-actin at a moderate rate and lacks filament-bundling activity. Additionally, both the formin homology FH1 and FH2 domains contribute to the overall rate of profilin-actin elongation. We also confirmed the physiological importance of the actin-assembly activity of the fission yeast formins. Point mutants that disrupt their ability to stimulate actin assembly in vitro do not function properly in vivo.
机译:裂变酵母表达三种不同的肌动蛋白细胞骨架过程所需的formins:Cdc12(胞质分裂),For3(极化)和Fus1(交配)。我们建议,除了差异调节外,关键的肌动蛋白组装特性还可以针对特定角色定制福尔马胶。与经过深入研究的Cdc12直接比较,我们报告了For3和Fus1的肌动蛋白组装特性的首次体外表征。这三者都有基本的formin活动;但是,特定的反应速率差异很大。 Cdc12是一种有效的成核剂(每3个Cdc12二聚体有一个细丝),以10个亚基s〜(-1)μM〜(-1)的中等速率持续性地延长纤溶酶-肌动蛋白,但缺乏细丝束缚活性。 Fus1还是一种有效的成核剂,但以比Cdc12一半的速率进行前体纤溶蛋白-肌动蛋白的伸长,解离的速度比Cdc12快10倍。它也捆扎细丝。 For3的成核细丝比Fus1少100倍,但是像Cdc12一样,以适中的速度逐步延长了profilin-actin的生长,并且缺乏细丝捆扎活性。此外,formin同源性FH1和FH2结构域都有助于蛋白质纤溶酶-肌动蛋白延伸的总体速率。我们还证实了裂变酵母formins的肌动蛋白组装活性的生理重要性。破坏其体外刺激肌动蛋白装配能力的点突变体在体内不能正常发挥作用。

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