Grupo EXPRELA, Centro de Investigacións Científicas Avanzadas (CICA), Departamento de Bioloxía, Facultade de Ciencias, INIBIC-Universidade de A Coruña, Campus de A Zapateira, 15071 A Coruña, Spain.
Biomolecules. 2021 Sep 21;11(9):1392. doi: 10.3390/biom11091392.
In the traditional fermentative model yeast , Ixr1 is an HMGB (High Mobility Group box B) protein that has been considered as an important regulator of gene transcription in response to external changes like oxygen, carbon source, or nutrient availability. is also a useful eukaryotic model, more similar to many human cells due to its respiratory metabolism. We cloned and functionally characterized by different methodologies IXR1, which encodes a protein with only 34.4% amino acid sequence similarity to Ixr1. Our data indicate that both proteins share common functions, including their involvement in the response to hypoxia or oxidative stress induced by hydrogen peroxide or metal treatments, as well as in the control of key regulators for maintenance of the dNTP (deoxyribonucleotide triphosphate) pool and ribosome synthesis. Ixr1 is able to bind specific regulatory DNA sequences in the promoter of its target genes, which are well conserved between and . Oppositely, we found important differences between Irx1 and Ixr1 affecting cellular responses to cisplatin or cycloheximide in these yeasts, which could be dependent on specific and non-conserved domains present in these two proteins.
在传统的酵母发酵模型中,Ixr1 是一种 HMGB(高迁移率族蛋白 B)蛋白,被认为是响应外部变化(如氧、碳源或营养可用性)的基因转录的重要调节剂。酿酒酵母也是一种有用的真核生物模型,由于其呼吸代谢,与许多人类细胞更相似。我们通过不同的方法克隆并功能表征了 IXR1,它编码的蛋白质与 Ixr1 的氨基酸序列相似性仅为 34.4%。我们的数据表明,这两种蛋白质具有共同的功能,包括它们参与对缺氧或由过氧化氢或金属处理诱导的氧化应激的反应,以及对维持 dNTP(脱氧核苷酸三磷酸)池和核糖体合成的关键调节剂的控制。Ixr1 能够结合其靶基因启动子中的特定调节 DNA 序列,这些序列在 和 之间高度保守。相反,我们发现 Irx1 和 Ixr1 之间存在重要差异,这些差异影响这两种酵母对顺铂或环己酰亚胺的细胞反应,这可能取决于这两种蛋白质中存在的特定和非保守结构域。