Kashkan Ivan, Timofeyenko Ksenia, Růžička Kamil
Laboratory of Hormonal Regulations in Plants, Institute of Experimental Botany, Czech Academy of Sciences, Prague, Czech Republic.
Functional Genomics and Proteomics of Plants, Central European Institute of Technology and National Centre for Biomolecular Research, Masaryk University, Brno 62500, Czech Republic.
Quant Plant Biol. 2022 Jul 1;3:e14. doi: 10.1017/qpb.2022.9. eCollection 2022.
Most plant primary transcripts undergo alternative splicing (AS), and its impact on protein diversity is a subject of intensive investigation. Several studies have uncovered various mechanisms of how particular protein splice isoforms operate. However, the common principles behind the AS effects on protein function in plants have rarely been surveyed. Here, on the selected examples, we highlight diverse tissue expression patterns, subcellular localization, enzymatic activities, abilities to bind other molecules and other relevant features. We describe how the protein isoforms mutually interact to underline their intriguing roles in altering the functionality of protein complexes. Moreover, we also discuss the known cases when these interactions have been placed inside the autoregulatory loops. This review is particularly intended for plant cell and developmental biologists who would like to gain inspiration on how the splice variants encoded by their genes of interest may coordinately work.
大多数植物初级转录本会经历可变剪接(AS),其对蛋白质多样性的影响是深入研究的课题。多项研究揭示了特定蛋白质剪接异构体发挥作用的各种机制。然而,关于可变剪接对植物蛋白质功能影响背后的普遍原理却鲜有探讨。在此,通过选定的实例,我们突出了不同的组织表达模式、亚细胞定位、酶活性、结合其他分子的能力及其他相关特征。我们描述了蛋白质异构体如何相互作用以突显它们在改变蛋白质复合物功能方面的有趣作用。此外,我们还讨论了这些相互作用被置于自动调节回路中的已知案例。本综述特别面向那些希望从其感兴趣基因编码的剪接变体如何协同工作中获得启发的植物细胞和发育生物学家。