Department of Biotechnology, School of Applied Biology and Biotechnology, Agricultural University of Athens, Athens 11855, Greece.
Department of Botany, Faculty of Biology, National & Kapodistrian University of Athens, Athens 15784, Greece.
Plant Physiol. 2022 Aug 1;189(4):2368-2381. doi: 10.1093/plphys/kiac230.
Selenium-binding proteins (SBPs) represent a ubiquitous protein family implicated in various environmental stress responses, although the exact molecular and physiological role of the SBP family remains elusive. In this work, we report the identification and characterization of CrSBD1, an SBP homolog from the model microalgae Chlamydomonas reinhardtii. Growth analysis of the C. reinhardtii sbd1 mutant strain revealed that the absence of a functional CrSBD1 resulted in increased growth under mild oxidative stress conditions, although cell viability rapidly declined at higher hydrogen peroxide (H2O2) concentrations. Furthermore, a combined global transcriptomic and metabolomic analysis indicated that the sbd1 mutant exhibited a dramatic quenching of the molecular and biochemical responses upon H2O2-induced oxidative stress when compared to the wild-type. Our results indicate that CrSBD1 represents a cell regulator, which is involved in the modulation of C. reinhardtii early responses to oxidative stress. We assert that CrSBD1 acts as a member of an extensive and conserved protein-protein interaction network including Fructose-bisphosphate aldolase 3, Cysteine endopeptidase 2, and Glutaredoxin 6 proteins, as indicated by yeast two-hybrid assays.
硒结合蛋白(SBPs)代表了一个普遍存在的蛋白质家族,涉及各种环境应激反应,尽管 SBP 家族的确切分子和生理作用仍不清楚。在这项工作中,我们报告了 CrSBD1 的鉴定和表征,CrSBD1 是模式微藻莱茵衣藻中的 SBP 同源物。对莱茵衣藻 sbd1 突变体菌株的生长分析表明,缺乏功能性 CrSBD1 导致在轻度氧化应激条件下生长增加,尽管在更高的过氧化氢(H2O2)浓度下细胞活力迅速下降。此外,综合的全局转录组学和代谢组学分析表明,与野生型相比,sbd1 突变体在 H2O2 诱导的氧化应激下表现出分子和生化反应的急剧猝灭。我们的结果表明,CrSBD1 代表一种细胞调节剂,参与调节莱茵衣藻对氧化应激的早期反应。我们断言,CrSBD1 作为一个广泛而保守的蛋白质-蛋白质相互作用网络的成员发挥作用,该网络包括果糖-二磷酸醛缩酶 3、半胱氨酸内肽酶 2 和谷氧还蛋白 6 蛋白,如酵母双杂交试验所示。