Steffens Alexandra, Bräutigam Andrea, Jakoby Marc, Hülskamp Martin
Botanical Institute, Biocenter, Cologne University, Cologne, Germany.
Institute of Plant Biochemistry, Cluster of Excellence on Plant Sciences (CEPLAS), Heinrich Heine University, Düsseldorf, Germany; Plant Biochemistry, Heinrich Heine University, Düsseldorf, Germany.
PLoS Biol. 2015 Jul 2;13(7):e1002188. doi: 10.1371/journal.pbio.1002188. eCollection 2015 Jul.
Members of the highly conserved class of BEACH domain containing proteins (BDCPs) have been established as broad facilitators of protein-protein interactions and membrane dynamics in the context of human diseases like albinism, bleeding diathesis, impaired cellular immunity, cancer predisposition, and neurological dysfunctions. Also, the Arabidopsis thaliana BDCP SPIRRIG (SPI) is important for membrane integrity, as spi mutants exhibit split vacuoles. In this work, we report a novel molecular function of the BDCP SPI in ribonucleoprotein particle formation. We show that SPI interacts with the P-body core component DECAPPING PROTEIN 1 (DCP1), associates to mRNA processing bodies (P-bodies), and regulates their assembly upon salt stress. The finding that spi mutants exhibit salt hypersensitivity suggests that the local function of SPI at P-bodies is of biological relevance. Transcriptome-wide analysis revealed qualitative differences in the salt stress-regulated transcriptional response of Col-0 and spi. We show that SPI regulates the salt stress-dependent post-transcriptional stabilization, cytoplasmic agglomeration, and localization to P-bodies of a subset of salt stress-regulated mRNAs. Finally, we show that the PH-BEACH domains of SPI and its human homolog FAN (Factor Associated with Neutral sphingomyelinase activation) interact with DCP1 isoforms from plants, mammals, and yeast, suggesting the evolutionary conservation of an association of BDCPs and P-bodies.
高度保守的含BEACH结构域蛋白家族(BDCPs)的成员已被确认为在白化病、出血性素质、细胞免疫受损、癌症易感性和神经功能障碍等人类疾病中蛋白质-蛋白质相互作用和膜动力学的广泛促进因子。此外,拟南芥BDCP SPIRRIG(SPI)对膜完整性很重要,因为spi突变体表现出液泡分裂。在这项工作中,我们报道了BDCP SPI在核糖核蛋白颗粒形成中的一种新的分子功能。我们表明,SPI与P小体核心成分去帽蛋白1(DCP1)相互作用,与mRNA加工小体(P小体)相关联,并在盐胁迫下调节它们的组装。spi突变体表现出盐超敏性这一发现表明,SPI在P小体上的局部功能具有生物学相关性。全转录组分析揭示了Col-0和spi在盐胁迫调节转录反应上的定性差异。我们表明,SPI调节盐胁迫依赖的转录后稳定、细胞质聚集以及盐胁迫调节的一部分mRNA定位于P小体。最后,我们表明,SPI及其人类同源物FAN(与中性鞘磷脂酶激活相关的因子)的PH-BEACH结构域与来自植物、哺乳动物和酵母的DCP1亚型相互作用,这表明BDCPs与P小体之间关联的进化保守性。