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Cellulose synthase complex organization and cellulose microfibril structure

机译:纤维素合酶复合物的组织和纤维素微纤维结构

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摘要

Cellulose consists of linear chains of β-1,4-linked glucose units, which are synthesized by the cellulose synthase complex (CSC). In plants, these chains associate in an ordered manner to form the cellulose microfibrils. Both the CSC and the local environment in which the individual chains coalesce to form the cellulose microfibril determine the structure and the unique physical properties of the microfibril. There are several recent reviews that cover many aspects of cellulose biosynthesis, which include trafficking of the complex to the plasma membrane and the relationship between the movement of the CSC and the underlying cortical microtubules (Bringmann et al. 2012 Trends Plant Sci. >17, 666–674 (); Kumar & Turner 2015 Phytochemistry >112, 91–99 (); Schneider et al. 2016 Curr. Opin. Plant Biol. >34, 9–16 ()). In this review, we will focus on recent advances in cellulose biosynthesis in plants, with an emphasis on our current understanding of the structure of individual catalytic subunits together with the local membrane environment where cellulose synthesis occurs. We will attempt to relate this information to our current knowledge of the structure of the cellulose microfibril and propose a model in which variations in the structure of the CSC have important implications for the structure of the cellulose microfibril produced.This article is part of a discussion meeting issue ‘New horizons for cellulose nanotechnology’.
机译:纤维素由β-1,4-连接的葡萄糖单元的线性链组成,这些链是由纤维素合酶复合物(CSC)合成的。在植物中,这些链以有序的方式结合形成纤维素微纤维。 CSC和单个链在其中结合形成纤维素微纤维的局部环境决定了微纤维的结构和独特的物理性质。最近有几篇综述涵盖了纤维素生物合成的许多方面,包括将复合物运输到质膜,以及CSC的运动与潜在的皮层微管之间的关系(Bringmann等人,2012 Trends Plant Sci。> 17 ,666-674(); Kumar&Turner 2015植物化学> 112 ,91-99(); Schneider等人2016 Curr。Opin。Plant Biol。> 34 ,9–16())。在这篇综述中,我们将重点关注植物中纤维素生物合成的最新进展,重点是我们目前对单个催化亚基的结构以及发生纤维素合成的局部膜环境的了解。我们将尝试将这些信息与我们目前对纤维素微纤维的结构的了解相关联,并提出一个模型,其中CSC结构的变化对所生产的纤维素微纤维的结构具有重要意义。会议议题“纤维素纳米技术的新视野”。

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