翻译起始因子eIF3M2上调热休克蛋白70,在热休克过程中维持花粉管膜的完整性

IF 8.2 1区 生物学 Q1 PLANT SCIENCES Plant Physiology Pub Date : 2025-01-24 DOI:10.1093/plphys/kiae643
Zahra Kahrizi, Christos Michailidis, Karel Raabe, Vinod Kumar, David Honys, Said Hafidh
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引用次数: 0

摘要

花粉萌发和花粉管生长对高温极为敏感。在热应激(HS)期间,全局翻译关闭,有利于维持细胞活力和防止蛋白质错误折叠的基本细胞蛋白质组。在这里,我们证明了在正常条件下,拟南芥(拟南芥)真核翻译起始因子亚基eif3m1/eif3m2双突变体表现出花粉萌发差,PT完整性丧失和流产率增加。令人惊讶的是,在37°C高温下,eif3m1花粉萌发优于野生型Col-0,显示出更高的PT完整性。我们确定eif3m1 PT耐热性的提高是由于其推测的平行eIF3M2的表达增加,这反过来又上调了热休克蛋白70 (HSP70) mRNA和蛋白水平。事实上,在HS条件下,eIF3M2过表达上调了HSP70的表达,而eIF3M2敲低显示HSP70.1启动子活性降低,PT burst增加。此外,我们发现eIF3M2在PTs中与HSP70共免疫沉淀,并直接与细胞质HSP70.1/2/4和eIF4G在烟叶路面细胞中相互作用。总的来说,我们的数据表明,植物利用eIF3M2-HSP70模块作为耐热性的调节器,以维持PT膜的完整性,提高高温下的受精和结实率。
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The translation initiation factor eIF3M2 upregulates HEAT SHOCK PROTEIN 70 to maintain pollen tube membrane integrity during heat shock
Pollen germination and pollen tube (PT) growth are extremely sensitive to high temperatures. During heat stress (HS), global translation shuts down and favors the maintenance of the essential cellular proteome for cell viability and protection against protein misfolding. Here, we demonstrate that under normal conditions, the Arabidopsis (Arabidopsis thaliana) eukaryotic translation initiation factor subunit eif3m1/eif3m2 double mutant exhibits poor pollen germination, loss of PT integrity and an increased rate of aborted seeds. Surprisingly, under HS at 37 °C, eif3m1 pollen germination outperformed wild-type Col-0, showing enhanced PT integrity. We established that the improved thermotolerance of the eif3m1 PT was due to increased expression of its putative paralog eIF3M2, which in turn upregulated Heat Shock protein 70 (HSP70) mRNA and protein levels. Indeed, eIF3M2 overexpression upregulated HSP70 expression, whereas eif3m2 knockdown showed reduced HSP70.1 promoter activity and increased in PT burst under HS conditions. Moreover, we show that eIF3M2 coimmunoprecipitates with HSP70 in PTs and directly interacts with cytoplasmic HSP70.1/2/4 and eIF4G in Nicotiana benthamiana pavement cells. Collectively, our data revealed that plants employ the eIF3M2-HSP70 module as a regulator of thermotolerance to maintain PT membrane integrity and improve fertilization and seed set adaptation under high temperatures.
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来源期刊
Plant Physiology
Plant Physiology 生物-植物科学
CiteScore
12.20
自引率
5.40%
发文量
535
审稿时长
2.3 months
期刊介绍: Plant Physiology® is a distinguished and highly respected journal with a rich history dating back to its establishment in 1926. It stands as a leading international publication in the field of plant biology, covering a comprehensive range of topics from the molecular and structural aspects of plant life to systems biology and ecophysiology. Recognized as the most highly cited journal in plant sciences, Plant Physiology® is a testament to its commitment to excellence and the dissemination of groundbreaking research. As the official publication of the American Society of Plant Biologists, Plant Physiology® upholds rigorous peer-review standards, ensuring that the scientific community receives the highest quality research. The journal releases 12 issues annually, providing a steady stream of new findings and insights to its readership.
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