Piotrowska Justyna, Wawrzyńska Anna, Olszak Marcin, Krzyszton Michal, Apodiakou Anastasia, Alseekh Saleh, Ramos José María López, Hoefgen Rainer, Kopriva Stanislav, Sirko Agnieszka
Laboratory of Plant Protein Homeostasis, Institute of Biochemistry and Biophysics Polish Academy of Sciences, Warsaw, Poland.
Laboratory of Seeds Molecular Biology, Institute of Biochemistry and Biophysics Polish Academy of Sciences, Warsaw, Poland.
Plant J. 2024 Dec;120(6):2919-2936. doi: 10.1111/tpj.17155. Epub 2024 Nov 29.
Because plants are immobile, they have developed intricate mechanisms to sense and absorb nutrients, adjusting their growth and development accordingly. Sulfur is an essential macroelement, but our understanding of its metabolism and homeostasis is limited. LSU (RESPONSE TO LOW SULFUR) proteins are plant-specific proteins with unknown molecular functions and were first identified during transcriptomic studies on sulfur deficiency in Arabidopsis. These proteins are crucial hubs that integrate environmental signals and are involved in the response to various stressors. Herein, we report the direct involvement of LSU proteins in primary sulfur metabolism. Our findings revealed that the quadruple lsu mutant, q-lsu-KO, which was grown under nonlimiting sulfate conditions, exhibited a molecular response resembling that of sulfur-deficient wild-type plants. This led us to explore the interactions of LSU proteins with sulfate reduction pathway enzymes. We found that all LSU proteins interact with ATPS1 and ATPS3 isoforms of ATP sulfurylase, all three isoforms of adenosine 5´ phosphosulfate reductase (APR), and sulfite reductase (SiR). Additionally, in vitro assays revealed that LSU1 enhances the enzymatic activity of SiR. These results highlight the supportive role of LSU proteins in the sulfate reduction pathway.
由于植物不能移动,它们已经进化出复杂的机制来感知和吸收养分,并相应地调整其生长和发育。硫是一种必需的大量元素,但我们对其代谢和体内平衡的了解有限。LSU(对低硫的反应)蛋白是植物特有的蛋白,其分子功能未知,最初是在拟南芥硫缺乏的转录组学研究中发现的。这些蛋白是整合环境信号的关键枢纽,参与对各种应激源的反应。在此,我们报道了LSU蛋白直接参与初级硫代谢。我们的研究结果表明,在非限制性硫酸盐条件下生长的四突变体q-lsu-KO表现出与硫缺乏野生型植物相似的分子反应。这促使我们探索LSU蛋白与硫酸盐还原途径酶之间的相互作用。我们发现所有LSU蛋白都与ATP硫酸化酶的ATPS1和ATPS3亚型、腺苷5´-磷酸硫酸还原酶(APR)的所有三种亚型以及亚硫酸盐还原酶(SiR)相互作用。此外,体外实验表明LSU1增强了SiR的酶活性。这些结果突出了LSU蛋白在硫酸盐还原途径中的支持作用。