Azimzadeh Juliette, Nacry Philippe, Christodoulidou Anna, Drevensek Stéphanie, Camilleri Christine, Amiour Nardjis, Parcy François, Pastuglia Martine, Bouchez David
Institut Jean-Pierre Bourgin, Station de Génétique et d'Amélioration des Plantes UR254, Institut National de la Recherche Agronomique, Centre de Versailles, F-78000 Versailles, France.
Plant Cell. 2008 Aug;20(8):2146-59. doi: 10.1105/tpc.107.056812. Epub 2008 Aug 29.
Plant cells have specific microtubule structures involved in cell division and elongation. The tonneau1 (ton1) mutant of Arabidopsis thaliana displays drastic defects in morphogenesis, positioning of division planes, and cellular organization. These are primarily caused by dysfunction of the cortical cytoskeleton and absence of the preprophase band of microtubules. Characterization of the ton1 insertional mutant reveals complex chromosomal rearrangements leading to simultaneous disruption of two highly similar genes in tandem, TON1a and TON1b. TON1 proteins are conserved in land plants and share sequence motifs with human centrosomal proteins. The TON1 protein associates with soluble and microsomal fractions of Arabidopsis cells, and a green fluorescent protein-TON1 fusion labels cortical cytoskeletal structures, including the preprophase band and the interphase cortical array. A yeast two-hybrid screen identified Arabidopsis centrin as a potential TON1 partner. This interaction was confirmed both in vitro and in plant cells. The similarity of TON1 with centrosomal proteins and its interaction with centrin, another key component of microtubule organizing centers, suggests that functions involved in the organization of microtubule arrays by the centrosome were conserved across the evolutionary divergence between plants and animals.
植物细胞具有参与细胞分裂和伸长的特定微管结构。拟南芥的tonneau1(ton1)突变体在形态发生、分裂平面定位和细胞组织方面表现出严重缺陷。这些主要是由皮质细胞骨架功能障碍和微管前期带缺失引起的。ton1插入突变体的特征揭示了复杂的染色体重排,导致串联的两个高度相似基因TON1a和TON1b同时被破坏。TON1蛋白在陆地植物中保守,并与人中心体蛋白共享序列基序。TON1蛋白与拟南芥细胞的可溶性和微粒体部分相关联,绿色荧光蛋白-TON1融合标记皮质细胞骨架结构,包括前期带和间期皮质阵列。酵母双杂交筛选确定拟南芥中心蛋白为潜在的TON1伙伴。这种相互作用在体外和植物细胞中均得到证实。TON1与中心体蛋白的相似性及其与中心蛋白(微管组织中心的另一个关键成分)的相互作用表明,中心体在微管阵列组织中的功能在植物和动物的进化分歧中是保守的。