首页> 外文期刊>Plant Physiology >Roles of the Ubiquitin/Proteasome Pathway in Pollen Tube Growth with Emphasis on MG132-Induced Alterations in Ultrastructure, Cytoskeleton, and Cell Wall Components1,[W]
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Roles of the Ubiquitin/Proteasome Pathway in Pollen Tube Growth with Emphasis on MG132-Induced Alterations in Ultrastructure, Cytoskeleton, and Cell Wall Components1,[W]

机译:泛素/蛋白酶体途径在花粉管生长中的作用,并着重于MG132诱导的超微结构,细胞骨架和细胞壁成分的改变,[W]

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摘要

The ubiquitin/proteasome pathway represents one of the most important proteolytic systems in eukaryotes and has been proposed as being involved in pollen tube growth, but the mechanism of this involvement is still unclear. Here, we report that proteasome inhibitors MG132 and epoxomicin significantly prevented Picea wilsonii pollen tube development and markedly altered tube morphology in a dose- and time-dependent manner, while hardly similar effects were detected when cysteine-protease inhibitor E-64 was used. Fluorogenic kinetic assays using fluorogenic substrate sLLVY-AMC confirmed MG132-induced inhibition of proteasome activity. The inhibitor-induced accumulation of ubiquitinated proteins (UbPs) was also observed using immunoblotting. Transmission electron microscopy revealed that MG132 induces endoplasmic reticulum (ER)-derived cytoplasmic vacuolization. Immunogold-labeling analysis demonstrated a significant accumulation of UbPs in degraded cytosol and dilated ER in MG132-treated pollen tubes. Fluorescence labeling with fluorescein isothiocyanate-phalloidin and -tubulin antibody revealed that MG132 disrupts the organization of F-actin and microtubules and consequently affects cytoplasmic streaming in pollen tubes. However, tip-focused Ca2+ gradient, albeit reduced, seemingly persists after MG132 treatment. Finally, fluorescence labeling with antipectin antibodies and calcofluor indicated that MG132 treatment induces a sharp decline in pectins and cellulose. This result was confirmed by Fourier transform infrared analysis, thus demonstrating for the first time the inhibitor-induced weakening of tube walls. Taken together, these findings suggest that MG132 treatment promotes the accumulation of UbPs in pollen tubes, which induces ER-derived cytoplasmic vacuolization and depolymerization of cytoskeleton and consequently strongly affects the deposition of cell wall components, providing a mechanistic framework for the functions of proteasome in the tip growth of pollen tubes.
机译:遍在蛋白/蛋白酶体途径代表了真核生物中最重要的蛋白水解系统之一,并已被提出参与花粉管的生长,但是这种参与的机制仍不清楚。在这里,我们报道了蛋白酶体抑制剂MG132和环氧霉素显着阻止了云杉花粉管的发育,并显着改变了管的形态,呈剂量和时间依赖性,而使用半胱氨酸蛋白酶抑制剂E-64几乎没有发现类似的效果。使用荧光底物sLLVY-AMC的荧光动力学分析证实了MG132诱导的蛋白酶体活性的抑制。使用免疫印迹法还观察到抑制剂诱导的泛素化蛋白(UbPs)积累。透射电子显微镜显示MG132诱导内质网(ER)衍生的细胞质空泡化。免疫金标记分析表明,在经过MG132处理的花粉管中,UbPs在降解的细胞质和膨胀的ER中大量积累。用异硫氰酸荧光素-鬼笔环肽和-微管蛋白抗体进行荧光标记显示,MG132破坏了F-肌动蛋白和微管的组织,因此影响了花粉管中的细胞质流。然而,尽管MG132处理后,尖端聚焦的Ca 2+梯度虽然降低了,但似乎仍然存在。最后,用抗果胶抗体和钙荧光标记的荧光标记表明,MG132处理可导致果胶和纤维素急剧下降。傅立叶变换红外分析证实了这一结果,从而首次证明了抑制剂诱导的管壁弱化。综上所述,这些发现表明MG132处理促进了花粉管中UbPs的积累,从而诱导ER衍生的细胞质空泡和细胞骨架解聚,从而强烈影响细胞壁成分的沉积,从而为蛋白酶体功能提供了机制。花粉管的尖端生长。

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  • 来源
    《Plant Physiology》 |2006年第4期|p.1578-1590|共13页
  • 作者单位

    Institute of Botany, Chinese Academy of Sciences, Key Laboratory of Photosynthesis and Molecular Environment Physiology, Beijing 100093, China (X.S., H.L., X.W., J.L.);

    College of Life Science, Northwest University, Xi'an 710069, China (X.S., Z.H.);

    Institute of Cellular and Molecular Botany, Rheinische Friedrich-Wilhelms-University Bonn, Department of Plant Cell Biology, D–53115 Bonn, Germany (F.B., J..);

    Institute of Botany, Slovak Academy of Sciences, SK–84223, Bratislava, Slovak Republic (F.B.);

    and Institute of Plant Genetics and Biotechnology, Slovak Academy of Sciences, SK–95007, Nitra, Slovak Republic (J..);

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