Research Centre for Natural Sciences, Institute of Enzymology, 1117 Budapest, Hungary.
Department of Biochemistry, Institute of Biology, ELTE Eötvös Loránd University, 1117 Budapest, Hungary.
Int J Mol Sci. 2021 Jun 8;22(12):6190. doi: 10.3390/ijms22126190.
Disordered plant chaperones play key roles in helping plants survive in harsh conditions, and they are indispensable for seeds to remain viable. Aside from well-known and thoroughly characterized globular chaperone proteins, there are a number of intrinsically disordered proteins (IDPs) that can also serve as highly effective protecting agents in the cells. One of the largest groups of disordered chaperones is the group of dehydrins, proteins that are expressed at high levels under different abiotic stress conditions, such as drought, high temperature, or osmotic stress. Dehydrins are characterized by the presence of different conserved sequence motifs that also serve as the basis for their categorization. Despite their accepted importance, the exact role and relevance of the conserved regions have not yet been formally addressed. Here, we explored the involvement of each conserved segment in the protective function of the intrinsically disordered stress protein (IDSP) Early Response to Dehydration (ERD14). We show that segments that are directly involved in partner binding, and others that are not, are equally necessary for proper function and that cellular protection emerges from the balanced interplay of different regions of ERD14.
紊乱的植物伴侣蛋白在帮助植物在恶劣条件下生存方面起着关键作用,对于种子保持活力也是不可或缺的。除了众所周知且经过充分表征的球形伴侣蛋白外,还有许多天然无序蛋白(IDP)也可以作为细胞内高效的保护剂。无序伴侣蛋白中最大的一组是脱水素,这些蛋白在不同的非生物胁迫条件下(如干旱、高温或渗透胁迫)高水平表达。脱水素的特征是存在不同的保守序列基序,这些基序也是其分类的基础。尽管它们的重要性已被广泛接受,但保守区域的确切作用和相关性尚未得到正式解决。在这里,我们探讨了每个保守片段在内在无序应激蛋白(IDSP)早期响应脱水(ERD14)的保护功能中的参与情况。我们表明,直接参与伴侣蛋白结合的片段和不直接参与伴侣蛋白结合的片段,对于正确的功能都是同等必要的,细胞保护来自 ERD14 不同区域的平衡相互作用。