Steiner Alexander, Rybak Katarzyna, Altmann Melina, McFarlane Heather E, Klaeger Susan, Nguyen Ngoc, Facher Eva, Ivakov Alexander, Wanner Gerhard, Kuster Bernhard, Persson Staffan, Braun Pascal, Hauser Marie-Theres, Assaad Farhah F
Botany, Technische Universität München, Freising, 85354, Germany.
Plant Systems Biology, Technische Universität München, Freising, 85354, Germany.
Plant J. 2016 Nov;88(4):531-541. doi: 10.1111/tpj.13275. Epub 2016 Oct 5.
Cytokinesis, the partitioning of the cytoplasm following nuclear division, requires extensive coordination between cell cycle cues, membrane trafficking and microtubule dynamics. Plant cytokinesis occurs within a transient membrane compartment known as the cell plate, to which vesicles are delivered by a plant-specific microtubule array, the phragmoplast. While membrane proteins required for cytokinesis are known, how these are coordinated with microtubule dynamics and regulated by cell cycle cues remains unclear. Here, we document physical and genetic interactions between Transport Protein Particle II (TRAPPII) tethering factors and microtubule-associated proteins of the PLEIADE/AtMAP65 family. These interactions do not specifically affect the recruitment of either TRAPPII or MAP65 proteins to the cell plate or midzone. Rather, and based on single versus double mutant phenotypes, it appears that they are required to coordinate cytokinesis with the nuclear division cycle. As MAP65 family members are known to be targets of cell cycle-regulated kinases, our results provide a conceptual framework for how membrane and microtubule dynamics may be coordinated with each other and with the nuclear cycle during plant cytokinesis.
胞质分裂是指核分裂后细胞质的分配过程,它需要细胞周期信号、膜运输和微管动力学之间进行广泛的协调。植物胞质分裂发生在一个称为细胞板的瞬时膜区室内,植物特异性微管阵列成膜体将囊泡运输到细胞板。虽然已知胞质分裂所需的膜蛋白,但这些蛋白如何与微管动力学协调以及如何受细胞周期信号调控仍不清楚。在这里,我们记录了运输蛋白颗粒II(TRAPPII)拴系因子与PLEIADE/AtMAP65家族的微管相关蛋白之间的物理和遗传相互作用。这些相互作用不会特异性地影响TRAPPII或MAP65蛋白募集到细胞板或中间区。相反,基于单突变体和双突变体表型,这些相互作用似乎是将胞质分裂与核分裂周期进行协调所必需的。由于已知MAP65家族成员是细胞周期调控激酶的靶标,我们的结果为植物胞质分裂过程中膜和微管动力学如何相互协调以及如何与核周期协调提供了一个概念框架。