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Cytoskeleton-mediated templating of complex cellulose-scaffolded extracellular structure and its association with oikosins in the urochordate Oikopleura

机译:细胞骨架介导的复杂纤维素骨架细胞外结构的模板及其与叶轮虫Oikopleura中的oikosins的关联

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摘要

Oriented cellulose deposition is critical to plant patterning and models suggest microtubules constrain cellulose synthase movements through the plasma membrane. Though widespread in plants, urochordates are the only animals that synthesize cellulose. We characterized the distinctive cellulose microfibril scaffold of the larvacean house and its interaction with house structural proteins (oikosins). Targeted disruption of cytoskeletal elements, secretory pathways, and plasma membrane organization, suggested a working model for templating extracellular cellulose microfibrils from animal cells that shows both convergence and differences to plant models. Specialized cortical F-actin arrays template microfibril orientation and glycosylphosphatidylinositol-anchored proteins in lipid rafts may act as scaffolding proteins in microfibril elongation. Microtubules deliver and maintain cellulose synthase complexes to specific cell membrane sites rather than orienting their movement through the membrane. Oikosins are incorporated into house compartments directly above their corresponding cellular field of expression and interact with the cellulose scaffold to a variable extent.Electronic supplementary materialThe online version of this article (doi:10.1007/s00018-010-0547-8) contains supplementary material, which is available to authorized users.
机译:定向的纤维素沉积对于植物构图至关重要,模型表明微管会限制纤维素合酶通过质膜的运动。尽管在植物中广泛存在,但urochordates是唯一合成纤维素的动物。我们的特点是幼虫的房子独特的纤维素微纤维支架及其与房屋结构蛋白(卵磷脂)的相互作用。有针对性的破坏细胞骨架成分,分泌途径和质膜组织,建议了一种从动物细胞中提取细胞外纤维素微纤维模板的工作模型,该模型显示了与植物模型的融合和差异。专门的皮质F-肌动蛋白阵列模板微纤丝定向和脂筏中糖基磷脂酰肌醇固定的蛋白可能充当微纤丝伸长的支架蛋白。微管将纤维素合成酶复合物传递并维持在特定的细胞膜位置,而不是定向其通过膜的运动。 Oikosins被掺入到其相应的细胞表达区域正上方的房屋隔室中,并在不同程度上与纤维素支架相互作用。电子补充材料本文的在线版本(doi:10.1007 / s00018-010-0547-8)包含补充材料,可供授权用户使用。

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