Arcalis Elsa, Ibl Verena, Peters Jenny, Melnik Stanislav, Stoger Eva
Department of Applied Genetics and Cell Biology, University of Natural Resources and Life Sciences Vienna, Austria.
Front Plant Sci. 2014 Sep 3;5:439. doi: 10.3389/fpls.2014.00439. eCollection 2014.
Cereal endosperm is a highly differentiated tissue containing specialized organelles for the accumulation of storage proteins, which are ultimately deposited either within protein bodies derived from the endoplasmic reticulum, or in protein storage vacuoles (PSVs). During seed maturation endosperm cells undergo a rapid sequence of developmental changes, including extensive reorganization and rearrangement of the endomembrane system and protein transport via several developmentally regulated trafficking routes. Storage organelles have been characterized in great detail by the histochemical analysis of fixed immature tissue samples. More recently, in vivo imaging and the use of tonoplast markers and fluorescent organelle tracers have provided further insight into the dynamic morphology of PSVs in different cell layers of the developing endosperm. This is relevant for biotechnological applications in the area of molecular farming because seed storage organelles in different cereal crops offer alternative subcellular destinations for the deposition of recombinant proteins that can reduce proteolytic degradation, allow control over glycan structures and increase the efficacy of oral delivery. We discuss how the specialized architecture and developmental changes of the endomembrane system in endosperm cells may influence the subcellular fate and post-translational modification of recombinant glycoproteins in different cereal species.
谷物胚乳是一种高度分化的组织,含有用于积累贮藏蛋白的特殊细胞器,这些贮藏蛋白最终沉积在内质网衍生的蛋白体中,或在蛋白贮藏液泡(PSV)中。在种子成熟过程中,胚乳细胞经历一系列快速的发育变化,包括内膜系统的广泛重组和重排,以及通过几种发育调控的运输途径进行的蛋白质运输。通过对固定的未成熟组织样本进行组织化学分析,已经对贮藏细胞器进行了详细的表征。最近,体内成像以及液泡膜标记物和荧光细胞器示踪剂的使用,进一步深入了解了发育中的胚乳不同细胞层中PSV的动态形态。这与分子农业领域的生物技术应用相关,因为不同谷物作物中的种子贮藏细胞器为重组蛋白的沉积提供了替代的亚细胞定位,这些重组蛋白可以减少蛋白水解降解,控制聚糖结构,并提高口服给药的效果。我们讨论了胚乳细胞内膜系统的特殊结构和发育变化如何影响不同谷物物种中重组糖蛋白的亚细胞命运和翻译后修饰。