Hála Michal, Cole Rex, Synek Lukás, Drdová Edita, Pecenková Tamara, Nordheim Alfred, Lamkemeyer Tobias, Madlung Johannes, Hochholdinger Frank, Fowler John E, Zárský Viktor
Institute of Experimental Botany, Academy of Sciences of the Czech Republic, 165 02 Prague 6, Czech Republic.
Plant Cell. 2008 May;20(5):1330-45. doi: 10.1105/tpc.108.059105. Epub 2008 May 20.
The exocyst, an octameric tethering complex and effector of Rho and Rab GTPases, facilitates polarized secretion in yeast and animals. Recent evidence implicates three plant homologs of exocyst subunits (SEC3, SEC8, and EXO70A1) in plant cell morphogenesis. Here, we provide genetic, cell biological, and biochemical evidence that these and other predicted subunits function together in vivo in Arabidopsis thaliana. Double mutants in exocyst subunits (sec5 exo70A1 and sec8 exo70A1) show a synergistic defect in etiolated hypocotyl elongation. Mutants in exocyst subunits SEC5, SEC6, SEC8, and SEC15a show defective pollen germination and pollen tube growth phenotypes. Using antibodies directed against SEC6, SEC8, and EXO70A1, we demonstrate colocalization of these proteins at the apex of growing tobacco pollen tubes. The SEC3, SEC5, SEC6, SEC8, SEC10, SEC15a, and EXO70 subunits copurify in a high molecular mass fraction of 900 kD after chromatographic fractionation of an Arabidopsis cell suspension extract. Blue native electrophoresis confirmed the presence of SEC3, SEC6, SEC8, and EXO70 in high molecular mass complexes. Finally, use of the yeast two-hybrid system revealed interaction of Arabidopsis SEC3a with EXO70A1, SEC10 with SEC15b, and SEC6 with SEC8. We conclude that the exocyst functions as a complex in plant cells, where it plays important roles in morphogenesis.
外泌体是一种由八个亚基组成的拴系复合物,也是Rho和Rab GTP酶的效应器,可促进酵母和动物中的极化分泌。最近有证据表明,外泌体亚基的三个植物同源物(SEC3、SEC8和EXO70A1)参与植物细胞形态发生。在这里,我们提供了遗传学、细胞生物学和生物化学证据,表明这些以及其他预测的亚基在拟南芥体内共同发挥作用。外泌体亚基的双突变体(sec5 exo70A1和sec8 exo70A1)在黄化胚轴伸长方面表现出协同缺陷。外泌体亚基SEC5、SEC6、SEC8和SEC15a的突变体表现出花粉萌发和花粉管生长缺陷的表型。使用针对SEC6、SEC8和EXO70A1的抗体,我们证明了这些蛋白质在生长中的烟草花粉管顶端共定位。在对拟南芥细胞悬浮提取物进行色谱分离后,SEC3、SEC5、SEC6、SEC8、SEC10、SEC15a和EXO70亚基在900 kD的高分子量级分中共同纯化。蓝色天然电泳证实了高分子量复合物中存在SEC3、SEC6、SEC8和EXO70。最后,酵母双杂交系统的使用揭示了拟南芥SEC3a与EXO70A1、SEC10与SEC15b以及SEC6与SEC8之间的相互作用。我们得出结论,外泌体在植物细胞中作为一个复合物发挥作用,在形态发生中起重要作用。