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拟南芥中参与初生细胞壁合成的纤维素合酶复合体的组织方式。

Organization of cellulose synthase complexes involved in primary cell wall synthesis in Arabidopsis thaliana.

作者信息

Desprez Thierry, Juraniec Michal, Crowell Elizabeth Faris, Jouy Hélène, Pochylova Zaneta, Parcy Francois, Höfte Herman, Gonneau Martine, Vernhettes Samantha

机构信息

Laboratoire de Biologie Cellulaire, Unité de Recherche 501, Institut Jean-Pierre Bourgin-Institut National de la Recherche Agronomique, Route de St Cyr, 78026 Versailles Cedex, France.

出版信息

Proc Natl Acad Sci U S A. 2007 Sep 25;104(39):15572-7. doi: 10.1073/pnas.0706569104. Epub 2007 Sep 18.

Abstract

In all land plants, cellulose is synthesized from hexameric plasma membrane complexes. Indirect evidence suggests that in vascular plants the complexes involved in primary wall synthesis contain three distinct cellulose synthase catalytic subunits (CESAs). In this study, we show that CESA3 and CESA6 fused to GFP are expressed in the same cells and at the same time in the hypocotyl of etiolated seedlings and migrate with comparable velocities along linear trajectories at the cell surface. We also show that CESA3 and CESA6 can be coimmunoprecipitated from detergent-solubilized extracts, their protein levels decrease in mutants for either CESA3, CESA6, or CESA1 and CESA3, CESA6 and also CESA1 can physically interact in vivo as shown by bimolecular fluorescence complementation. We also demonstrate that CESA6-related CESA5 and CESA2 are partially, but not completely, redundant with CESA6 and most likely compete with CESA6 for the same position in the cellulose synthesis complex. Using promoter-beta-glucuronidase fusions we show that CESA5, CESA6, and CESA2 have distinct overlapping expression patterns in hypocotyl and root corresponding to different stages of cellular development. Together, these data provide evidence for the existence of binding sites for three distinct CESA subunits in primary wall cellulose synthase complexes, with two positions being invariably occupied by CESA1 and CESA3, whereas at least three isoforms compete for the third position. Participation of the latter three isoforms might fine-tune the CESA complexes for the deposition of microfibrils at distinct cellular growth stages.

摘要

在所有陆地植物中,纤维素由六聚体质膜复合物合成。间接证据表明,在维管植物中,参与初生壁合成的复合物包含三种不同的纤维素合酶催化亚基(CESAs)。在本研究中,我们发现与绿色荧光蛋白(GFP)融合的CESA3和CESA6在黄化幼苗下胚轴的相同细胞中同时表达,并以相当的速度沿细胞表面的线性轨迹移动。我们还发现,CESA3和CESA6可以从去污剂溶解的提取物中进行共免疫沉淀,在CESA3、CESA6或CESA1和CESA3突变体中它们的蛋白质水平降低,并且如双分子荧光互补所示,CESA3、CESA6以及CESA1在体内可以发生物理相互作用。我们还证明,与CESA6相关的CESA5和CESA2与CESA6部分但并非完全冗余,并且很可能与CESA6竞争纤维素合成复合物中的相同位置。使用启动子-β-葡萄糖醛酸酶融合,我们发现CESA5、CESA6和CESA2在对应于细胞发育不同阶段的下胚轴和根中具有不同的重叠表达模式。总之,这些数据为初生壁纤维素合酶复合物中存在三个不同CESA亚基的结合位点提供了证据,其中两个位置始终被CESA1和CESA3占据,而至少三种同工型竞争第三个位置。后三种同工型的参与可能会微调CESA复合物,以便在不同的细胞生长阶段沉积微纤丝。

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