National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, Hubei Province, China.
Hubei Hongshan Laboratory, Wuhan, 430070, China.
Nat Commun. 2023 Aug 14;14(1):4888. doi: 10.1038/s41467-023-40729-5.
In plants, exocyst subunit isoforms exhibit significant functional diversity in that they are involved in either protein secretion or autophagy, both of which are essential for plant development and survival. Although the molecular basis of autophagy is widely reported, its contribution to plant reproduction is not very clear. Here, we have identified Exo84c, a higher plant-specific Exo84 isoform, as having a unique function in modulating exocytotic compartment degradation during stigmatic tissue senescence. This process is achieved through its interaction with the ER localised VAP27 proteins, which regulate the turnover of Exo84c through the autophagy pathway. VAP27 recruits Exo84c onto the ER membrane as well as numerous ER-derived autophagosomes that are labelled with ATG8. These Exo84c/exocyst and VAP27 positive structures are accumulated in the vacuole for degradation, and this process is partially perturbed in the exo84c knock-out mutants. Interestingly, the exo84c mutant showed a prolonged effective pollination period with higher seed sets, possibly because of the delayed stigmatic senescence when Exo84c regulated autophagy is blocked. In conclusion, our studies reveal a link between the exocyst complex and the ER network in regulating the degradation of exocytosis vesicles, a process that is essential for normal papilla cell senescence and flower receptivity.
在植物中,外被体亚基同工型表现出显著的功能多样性,因为它们参与蛋白质分泌或自噬,这两者对于植物的发育和生存都是必不可少的。尽管自噬的分子基础已被广泛报道,但它对植物繁殖的贡献尚不清楚。在这里,我们鉴定出 Exo84c 是一种高等植物特异性的 Exo84 同工型,它在调节柱头组织衰老过程中外质小泡降解中具有独特的功能。这一过程是通过其与定位于内质网的 VAP27 蛋白相互作用来实现的,VAP27 通过自噬途径调节 Exo84c 的周转。VAP27 将 Exo84c 招募到内质网膜上以及许多带有 ATG8 的内质网衍生的自噬体上。这些 Exo84c/外被体和 VAP27 阳性结构在液泡中积累进行降解,这个过程在 exo84c 敲除突变体中部分受到干扰。有趣的是,exo84c 突变体表现出延长的有效授粉期和更高的种子产量,这可能是因为 Exo84c 调节自噬被阻断时,柱头衰老延迟。总之,我们的研究揭示了外被体复合物与内质网网络之间的联系,在调节胞吐小泡的降解中起关键作用,这个过程对于正常乳突细胞衰老和花接受性是必不可少的。