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BENT UPPERMOST INTERNODE1 Encodes the Class II Formin FH5 Crucial for Actin Organization and Rice Development

机译:BENT UPPERMOST INTERNODE 1编码FH5中的II类形式对肌动蛋白组织和水稻发育至关重要

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摘要

The actin cytoskeleton is an important regulator of cell expansion and morphogenesis in plants. However, the molecular mechanisms linking the actin cytoskeleton to these processes remain largely unknown. Here, we report the functional analysis of rice (Oryza sativa) FH5/BENT UPPERMOST INTERNODE1 (BUI1), which encodes a formin-type actin nucleation factor and affects cell expansion and plant morphogenesis in rice. The bui1 mutant displayed pleiotropic phenotypes, including bent uppermost internode, dwarfism, wavy panicle rachis, and enhanced gravitropic response. Cytological observation indicated that the growth defects of bui1 were caused mainly by inhibition of cell expansion. Map-based cloning revealed that BUI1 encodes the class II formin FH5. FH5 contains a phosphatase tensin-like domain at its amino terminus and two highly conserved formin-homology domains, FH1 and FH2. In vitro biochemical analyses indicated that FH5 is capable of nucleating actin assembly from free or profilin-bound monomeric actin. FH5 also interacts with the barbed end of actin filaments and prevents the addition and loss of actin subunits from the same end. Interestingly, the FH2 domain of FH5 could bundle actin filaments directly and stabilize actin filaments in vitro. Consistent with these in vitro biochemical activities of FH5/BUI1, the amount of filamentous actin decreased, and the longitudinal actin cables almost disappeared in bui1 cells. The FH2 or FH1FH2 domains of FH5 could also bind to and bundle microtubules in vitro. Thus, our study identified a rice formin protein that regulates de novo actin nucleation and spatial organization of the actin filaments, which are important for proper cell expansion and rice morphogenesis.
机译:肌动蛋白细胞骨架是植物中细胞扩增和形态发生的重要调节剂。然而,将肌动蛋白细胞骨架与这些过程联系起来的分子机制仍然是未知的。在这里,我们报告水稻(Oryza sativa)FH5 / BENT UPPERMOST INTERNODE1(BUI1)的功能分析,它编码一种formin型肌动蛋白成核因子,并影响水稻的细胞扩增和植物形态发生。 bui1突变体表现出多效性表型,包括弯曲的最上节间,侏儒症,波浪圆锥花序和增强的重力反应。细胞学观察表明,bui1的生长缺陷主要是由于抑制细胞扩增引起的。基于图的克隆显示BUI1编码II类formin FH5。 FH5在其氨基末端包含一个磷酸酶张力蛋白样结构域和两个高度保守的形式同源结构域FH1和FH2。体外生化分析表明,FH5能够从游离或结合蛋白原的单体肌动蛋白中使肌动蛋白组装成核。 FH5还与肌动蛋白丝的带刺末端相互作用,并防止肌动蛋白亚基从同一末端添加和丢失。有趣的是,FH5的FH2结构域可以直接捆绑肌动蛋白丝,并在体外稳定肌动蛋白丝。与FH5 / BUI1的这些体外生化活性一致,bui1细胞中丝状肌动蛋白的数量减少,纵向肌动蛋白电缆几乎消失。 FH5的FH2或FH1FH2域也可以在体外与微管结合并捆绑。因此,我们的研究确定了一种水稻formin蛋白,它调节肌动蛋白丝的新生肌动蛋白成核和空间组织,这对于适当的细胞扩增和水稻形态发生很重要。

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