Xu Liai, Liu Tingting, Xiong Xingpeng, Shen Xiuping, Huang Li, Yu Youjian, Cao Jiashu
Laboratory of Cell & Molecular Biology, Institute of Vegetable Science, Zhejiang University, Hangzhou, China.
Collaborative Innovation Center for Efficient and Green Production of Agriculture in Mountainous Areas of Zhejiang Province, College of Horticulture Science, Zhejiang A&F University, Hangzhou, China.
Front Plant Sci. 2022 Jul 15;13:932793. doi: 10.3389/fpls.2022.932793. eCollection 2022.
Plant CCCH zinc-finger proteins form a large family of regulatory proteins function in many aspects of plant growth, development and environmental responses. Despite increasing reports indicate that many CCCH zinc-finger proteins exhibit similar subcellular localization of being localized in cytoplasmic foci, the underlying molecular mechanism and the connection between this specific localization pattern and protein functions remain largely elusive. Here, we identified another cytoplasmic foci-localized CCCH zinc-finger protein, AtC3H18, in . is predominantly expressed in developing pollen during microgametogenesis. Although mutants did not show any abnormal phenotype, possibly due to redundant gene(s), aberrant expression levels caused by overexpression resulted in the assembly of AtC3H18-positive granules in a dose-dependent manner, which in turn led to male sterility phenotype, highlighting the importance of fine-tuned expression. Further analyzes demonstrated that AtC3H18-positive granules are messenger ribonucleoprotein (mRNP) granules, since they can exhibit liquid-like physical properties, and are associated with another two mRNP granules known as processing bodies (PBs) and stress granules (SGs), reservoirs of translationally inhibited mRNAs. Moreover, the assembly of AtC3H18-positive granules depends on mRNA availability. Combined with our previous findings on the homologous genes in , we concluded that appropriate expression level of during microgametogenesis is essential for normal pollen development, and we also speculated that AtC3H18 may act as a key component of mRNP granules to modulate pollen mRNAs by regulating the assembly/disassembly of mRNP granules, thereby affecting pollen development.
植物CCCH锌指蛋白构成了一个庞大的调节蛋白家族,在植物生长、发育和环境响应的许多方面发挥作用。尽管越来越多的报道表明,许多CCCH锌指蛋白表现出相似的亚细胞定位,即定位于细胞质焦点,但潜在的分子机制以及这种特定定位模式与蛋白质功能之间的联系仍 largely elusive。在这里,我们在拟南芥中鉴定出另一种定位于细胞质焦点的CCCH锌指蛋白AtC3H18。AtC3H18在小孢子发生过程中的发育花粉中主要表达。尽管AtC3H18突变体没有表现出任何异常表型,可能是由于基因冗余,但过表达导致的异常AtC3H18表达水平以剂量依赖的方式导致AtC3H18阳性颗粒的组装,进而导致雄性不育表型,突出了精确调节AtC3H18表达的重要性。进一步分析表明,AtC3H18阳性颗粒是信使核糖核蛋白(mRNP)颗粒,因为它们可以表现出类似液体的物理性质,并且与另外两种mRNP颗粒,即加工小体(PBs)和应激颗粒(SGs)相关,加工小体和应激颗粒是翻译受抑制mRNA的储存库。此外,AtC3H18阳性颗粒的组装取决于mRNA的可用性。结合我们之前对拟南芥同源基因的研究结果,我们得出结论,在小孢子发生过程中AtC3H18的适当表达水平对于正常花粉发育至关重要,并且我们还推测AtC3H18可能作为mRNP颗粒的关键成分,通过调节mRNP颗粒的组装/解体来调节花粉mRNA,从而影响花粉发育。