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Plant glycine-rich proteins: a family or just proteins with a common motif?

机译:植物富含甘氨酸的蛋白质:一个家族还是仅仅是具有共同基序的蛋白质?

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Twelve years ago a set of glycine-rich proteins (GRP) of plants were characterized and since then a wealth of new GRPs have been identified. The highly specific but diverse expression pattern of grp genes, taken together with the distinct sub-cellular localisation of some GRP groups, clearly indicate that these proteins are implicated in several independent physiological processes. Notwithstanding the absence of a clear definition of the role of GRPs in plant cells, studies conducted with these proteins have provided new and interesting insights on the molecular and cell biology of plants. Complex regulated promoters and distinct mechanisms of gene expression regulation have been demonstrated. New protein targeting pathways, as well as the exportation of GRPs from different cell types have been discovered. These data show that GRPs can be useful as markers and/or models to understand distinct aspects of plant biology. In this review, the structural and functional features of this family of plant proteins will be summarised. Special emphasis will be given to the gene expression regulation of GRPs isolated from different plant species, as it can help to unravel their possible biological functions.
机译:十二年前,对一组植物的富含甘氨酸的蛋白质(GRP)进行了表征,从那时起,已经鉴定出许多新的GRP。 grp基因的高度特异性但多样化的表达方式,与某些GRP基团的独特亚细胞定位一起,清楚地表明,这些蛋白质与几个独立的生理过程有关。尽管没有明确定义GRP在植物细胞中的作用,但是用这些蛋白质进行的研究为植物的分子和细胞生物学提供了新的有趣的见解。已经证明了复杂的调控启动子和基因表达调控的独特机制。已经发现了新的蛋白质靶向途径以及来自不同细胞类型的GRP的输出。这些数据表明,GRP可用作标记和/或模型以了解植物生物学的不同方面。在这篇综述中,将总结该植物蛋白家族的结构和功能特征。将特别强调从不同植物物种分离的GRP的基因表达调控,因为它可以帮助阐明它们可能的生物学功能。

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