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首页> 外文期刊>Scientific reports. >Direct observation of the effects of cellulose synthesis inhibitors using live cell imaging of Cellulose Synthase (CESA) in Physcomitrella patens
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Direct observation of the effects of cellulose synthesis inhibitors using live cell imaging of Cellulose Synthase (CESA) in Physcomitrella patens

机译:使用纤维素合酶(CESA)在小立碗藓中的活细胞成像直接观察纤维素合成抑制剂的作用

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Results from live cell imaging of fluorescently tagged Cellulose Synthase (CESA) proteins in Cellulose Synthesis Complexes (CSCs) have enhanced our understanding of cellulose biosynthesis, including the mechanisms of action of cellulose synthesis inhibitors. However, this method has been applied only in Arabidopsis thaliana and Brachypodium distachyon thus far. Results from freeze fracture electron microscopy of protonemal filaments of the moss Funaria hygrometrica indicate that a cellulose synthesis inhibitor, 2,6-dichlorobenzonitrile (DCB), fragments CSCs and clears them from the plasma membrane. This differs from Arabidopsis, in which DCB causes CSC accumulation in the plasma membrane and a different cellulose synthesis inhibitor, isoxaben, clears CSCs from the plasma membrane. In this study, live cell imaging of the moss Physcomitrella patens indicated that DCB and isoxaben have little effect on protonemal growth rates, and that only DCB causes tip rupture. Live cell imaging of mEGFP-PpCESA5 and mEGFP-PpCESA8 showed that DCB and isoxaben substantially reduced CSC movement, but had no measureable effect on CSC density in the plasma membrane. These results suggest that DCB and isoxaben have similar effects on CSC movement in P. patens and Arabidopsis, but have different effects on CSC intracellular trafficking, cell growth and cell integrity in these divergent plant lineages.
机译:纤维素合成复合物(CSC)中荧光标记的纤维素合成酶(CESA)蛋白的活细胞成像结果增强了我们对纤维素生物合成的理解,包括纤维素合成抑制剂的作用机理。但是,到目前为止,该方法仅在拟南芥和短枝曲霉中应用。苔藓真菌湿度的前体细丝的冷冻断裂电子显微镜结果表明,纤维素合成抑制剂2,6-二氯苄腈(DCB)使CSC碎裂并从质膜上清除。这与拟南芥不同,在拟南芥中,DCB导致CSC在质膜中积聚,而另一种纤维素合成抑制剂异恶草素从质膜中清除CSC。在这项研究中,苔藓小立碗藓的活细胞成像表明DCB和异恶草素对原代细胞的生长速度几乎没有影响,只有DCB会引起尖端破裂。对mEGFP-PpCESA5和mEGFP-PpCESA8的活细胞成像显示,DCB和异恶双烯显着降低了CSC的运动,但对质膜中的CSC密度没有可测量的影响。这些结果表明,DCB和异沙宾对P. patens和拟南芥中的CSC运动具有相似的作用,但在这些不同的植物谱系中对CSC的细胞内运输,细胞生长和细胞完整性具有不同的影响。

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