Department of Biochemistry and Molecular Biology and Soil Science and Agricultural Chemistry, Faculty of Science, University of Alicante, Ap 99, 03080 Alicante, Spain.
Int J Mol Sci. 2024 Jan 1;25(1):580. doi: 10.3390/ijms25010580.
The Sm protein superfamily includes Sm, like-Sm (Lsm), and Hfq found in the , , and domains. Archaeal Lsm proteins have been shown to bind sRNAs and are probably involved in various cellular processes, suggesting a similar function in regulating sRNAs by Hfq in bacteria. Moreover, archaeal Lsm proteins probably represent the ancestral Lsm domain from which eukaryotic Sm proteins have evolved. In this work, was used as a model organism because it has been widely used to investigate the nitrogen cycle and its regulation in Haloarchaea. Predicting this protein's secondary and tertiary structures has resulted in a three-dimensional model like the solved Lsm protein structure of . To obtain information on the oligomerization state of the protein, homologous overexpression and purification by means of molecular exclusion chromatography have been performed. The results show that this protein can form hexameric complexes, which can aggregate into 6 or 12 hexameric rings depending on the NaCl concentration and without RNA. In addition, the study of transcriptional expression via microarrays has allowed us to obtain the target genes regulated by the Lsm protein under nutritional stress conditions: nitrogen or carbon starvation. Microarray analysis has shown the first universal stress proteins (USP) in this microorganism that mediate survival in situations of nitrogen deficiency.
Sm 蛋白超家族包括 Sm、类似 Sm(Lsm)和 Hfq,存在于原核生物、真核生物和古菌中。已经证明古菌 Lsm 蛋白可以结合 sRNA,并可能参与各种细胞过程,这表明 Hfq 在细菌中通过类似的功能来调节 sRNA。此外,古菌 Lsm 蛋白可能代表了真核 Sm 蛋白进化的祖先 Lsm 结构域。在这项工作中, 被用作模型生物,因为它已被广泛用于研究嗜盐古菌中的氮循环及其调控。预测该蛋白的二级和三级结构得到了类似于已解决的 Lsm 蛋白结构的三维模型。为了获取该蛋白寡聚状态的信息,通过分子排阻层析进行了同源过表达和纯化。结果表明,该蛋白可以形成六聚体复合物,这些复合物可以根据 NaCl 浓度和没有 RNA 的情况聚集形成 6 或 12 个六聚体环。此外,通过微阵列进行的转录表达研究使我们能够获得在营养胁迫条件下受 Lsm 蛋白调控的靶基因:氮或碳饥饿。微阵列分析显示了这种微生物中的第一个普遍应激蛋白(USP),它介导在氮缺乏情况下的存活。