Zhu Xiaoyu, Tellier Frédérique, Gu Ying, Li Shundai
Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.
Institut Jean-Pierre Bourgin, INRAE-AgroParisTech, 78000 Versailles, France.
Plants (Basel). 2020 Nov 18;9(11):1599. doi: 10.3390/plants9111599.
In higher plants, cellulose is synthesized by membrane-spanning large protein complexes named cellulose synthase complexes (CSCs). In this study, the PASTICCINO2 (PAS2) was identified as an interacting partner of cellulose synthases. PAS2 was previously characterized as the plant 3-hydroxy-acyl-CoA dehydratase, an ER membrane-localized dehydratase that is essential for very-long-chain-fatty acid (VLCFA) elongation. The mutants show defective cell elongation and reduction in cellulose content in both etiolated hypocotyls and light-grown roots. Although disruption of VLCFA synthesis by a genetic alteration had a reduction in VLCFA in both etiolated hypocotyls and light-grown roots, it had a differential effect on cellulose content in the two systems, suggesting the threshold level of VLCFA for efficient cellulose synthesis may be different in the two biological systems. had a reduction in both CSC delivery rate and CSC velocity at the PM in etiolated hypocotyls. Interestingly, Golgi but not post-Golgi endomembrane structures exhibited a severe defect in motility. Experiments using pharmacological perturbation of VLCFA content in etiolated hypocotyls strongly indicate a novel function of PAS2 in the regulation of CSC and Golgi motility. Through a combination of genetic, biochemical and cell biology studies, our study demonstrated that PAS2 as a multifunction protein has an important role in the regulation of cellulose biosynthesis in Arabidopsis hypocotyl.
在高等植物中,纤维素由名为纤维素合酶复合体(CSCs)的跨膜大蛋白复合体合成。在本研究中,PASTICCINO2(PAS2)被鉴定为纤维素合酶的相互作用伴侣。PAS2先前被表征为植物3-羟基-酰基辅酶A脱水酶,一种内质网(ER)膜定位的脱水酶,对极长链脂肪酸(VLCFA)延长至关重要。突变体在黄化胚轴和光照下生长的根中均表现出细胞伸长缺陷和纤维素含量降低。尽管通过基因改变破坏VLCFA合成会使黄化胚轴和光照下生长的根中的VLCFA均减少,但它对这两个系统中的纤维素含量有不同影响,这表明两个生物系统中高效纤维素合成所需的VLCFA阈值水平可能不同。黄化胚轴中质膜(PM)处的CSC递送速率和CSC速度均降低。有趣的是,高尔基体而非高尔基体后内膜结构在运动性方面表现出严重缺陷。利用药物扰动黄化胚轴中VLCFA含量的实验有力地表明了PAS2在调节CSC和高尔基体运动性方面的新功能。通过遗传、生化和细胞生物学研究的结合,我们的研究表明,PAS2作为一种多功能蛋白在拟南芥胚轴纤维素生物合成调节中具有重要作用。