Departamento de Genética Molecular, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, CP 04510 Cd., Mexico.
Unidad de Biología Molecular, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, CP 04510 Cd., Mexico.
Cells. 2019 Jul 12;8(7):710. doi: 10.3390/cells8070710.
In the yeast , components of the High Osmolarity Glycerol (HOG) pathway are important for the response to diverse stresses including response to endoplasmic reticulum stress (ER stress), which is produced by the accumulation of unfolded proteins in the lumen of this organelle. Accumulation of unfolded proteins may be due to the inhibition of protein -glycosylation, which can be achieved by treatment with the antibiotic tunicamycin (Tn). In this work we were interested in finding proteins involved in the ER stress response regulated by Hog1, the mitogen activated protein kinase (MAPK) of the HOG pathway. A high gene dosage suppression screening allowed us to identify genes that suppressed the sensitivity to Tn shown by a mutant. The suppressors participate in a limited number of cellular processes, including lipid/carbohydrate biosynthesis and protein glycosylation, vesicle-mediated transport and exocytosis, cell wall organization and biogenesis, and cell detoxification processes. The finding of suppressors Rer2 and Srt1, which participate in the dolichol biosynthesis pathway revealed that the strain has a defective polyprenol metabolism. This work uncovers new genetic and functional interactors of Hog1 and contributes to a better understanding of the participation of this MAPK in the ER stress response.
在酵母中,高渗甘油(HOG)途径的成分对于应对多种应激很重要,包括对内质网应激(ER 应激)的反应,内质网应激是由该细胞器腔中未折叠蛋白质的积累引起的。未折叠蛋白质的积累可能是由于蛋白质糖基化的抑制,这可以通过用抗生素衣霉素(Tn)处理来实现。在这项工作中,我们有兴趣寻找受 Hog1 调节的 ER 应激反应相关的蛋白质,Hog1 是 HOG 途径中的丝裂原活化蛋白激酶(MAPK)。高基因剂量抑制筛选使我们能够识别出抑制突变体对 Tn 敏感性的基因。这些抑制剂参与了数量有限的细胞过程,包括脂质/碳水化合物生物合成和蛋白质糖基化、囊泡介导的运输和胞吐作用、细胞壁组织和生物发生以及细胞解毒过程。发现参与多萜醇生物合成途径的抑制剂 Rer2 和 Srt1 表明, 菌株的聚异戊二烯代谢有缺陷。这项工作揭示了 Hog1 的新的遗传和功能相互作用因子,并有助于更好地理解这种 MAPK 参与 ER 应激反应。