State Key Laboratory for Protein and Plant Gene Research, Peking-Tsinghua Center for Life Sciences at College of Life Sciences, Peking University, Beijing 100871, People's Republic of China.
School of Life Sciences, Shanxi University, Taiyuan, Shanxi Province 030006, People's Republic of China.
Plant Cell. 2021 Sep 24;33(9):3042-3056. doi: 10.1093/plcell/koab164.
In eukaryotes, homotypic fusion and vacuolar protein sorting (HOPS) as well as class C core vacuole/endosome tethering (CORVET) are evolutionarily conserved membrane tethering complexes that play important roles in lysosomal/vacuolar trafficking. Whether HOPS and CORVET control endomembrane trafficking in pollen tubes, the fastest growing plant cells, remains largely elusive. In this study, we demonstrate that the four core components shared by the two complexes, Vacuole protein sorting 11 (VPS11), VPS16, VPS33, and VPS18, are all essential for pollen tube growth in Arabidopsis thaliana and thus for plant reproduction success. We used VPS18 as a representative core component of the complexes to show that the protein is localized to both multivesicular bodies (MVBs) and the tonoplast in a growing pollen tube. Mutant vps18 pollen tubes grew more slowly in vivo, resulting in a significant reduction in male transmission efficiency. Additional studies revealed that membrane fusion from MVBs to vacuoles is severely compromised in vps18 pollen tubes, corroborating the function of VPS18 in late endocytic trafficking. Furthermore, vps18 pollen tubes produce excessive exocytic vesicles at the apical zone and excessive amounts of pectin and pectin methylesterases in the cell wall. In conclusion, this study establishes an additional conserved role of HOPS/CORVET in homotypic membrane fusion during vacuole biogenesis in pollen tubes and reveals a feedback regulation of HOPS/CORVET in the secretion of cell wall modification enzymes of rapidly growing plant cells.
在真核生物中,同源融合和液泡蛋白分选(HOPS)以及类 C 核心液泡/内体连接(CORVET)是进化上保守的膜连接复合物,在溶酶体/液泡运输中发挥重要作用。HOPS 和 CORVET 是否控制花粉管中内质网运输,花粉管是生长最快的植物细胞,这在很大程度上仍然难以捉摸。在这项研究中,我们证明了这两个复合物共有的四个核心成分,Vacuole protein sorting 11(VPS11)、VPS16、VPS33 和 VPS18,对于拟南芥花粉管的生长以及植物繁殖的成功都是必不可少的。我们使用 VPS18 作为复合物的代表性核心成分,表明该蛋白定位于生长中的花粉管中的多泡体(MVBs)和液泡膜上。突变体 vps18 花粉管在体内生长更慢,导致雄性传递效率显著降低。进一步的研究表明,MVBs 到液泡的膜融合在 vps18 花粉管中严重受损,证实了 VPS18 在晚期内体运输中的功能。此外,vps18 花粉管在顶端区产生过多的胞吐小泡,细胞壁中存在过多的果胶和果胶甲酯酶。总之,这项研究确立了 HOPS/CORVET 在花粉管液泡发生过程中同源膜融合中的另一个保守作用,并揭示了 HOPS/CORVET 在快速生长的植物细胞壁修饰酶分泌中的反馈调节作用。