Fedorin Dmitry N, Khomutova Anna E, Eprintsev Alexander T, Igamberdiev Abir U
Department of Biochemistry and Cell Physiology, Voronezh State University, 394018 Voronezh, Russia.
Department of Biology, Memorial University of Newfoundland, St. John's, NL A1C 5S7, Canada.
Int J Mol Sci. 2025 Jan 21;26(3):865. doi: 10.3390/ijms26030865.
Different types of microRNA participate in the post-transcriptional regulation of target genes. The content of several hypoxia-dependent miRNAs in plant cells, including miR775, increases in the conditions of oxygen deficiency. Electrophoretic studies of total RNA samples from the leaves of flooded seedlings of maize ( L.) revealed the presence of two interfering complexes with miR775 at 12 h of hypoxic incubation. A nucleotide sequence analysis of a sample containing the interfering complex of miR775 with mRNA from maize leaves showed a high degree of homology with the ICL/PEPM_KPHMT lyase family domain. It corresponded to a fragment of fructose-1,6-bisphosphate aldolase mRNA. By real-time PCR, we established the dynamics of the content of transcripts of aldolase isoenzyme genes under hypoxia in maize leaves. A decrease in the transcriptional activity of the aldolase 1 gene () correlated with a high content of miR775 in maize leaf cells. The fraction of extracellular vesicles sedimented at 100,000× , was enriched with miR775. The accumulation of aldolase 2 () mRNA transcripts under hypoxic conditions indicates its participation in maintaining glycolysis when expression is inhibited. We conclude that an increase in the total content of free miR775 and its participation in the suppression of the gene represents an important mechanism in developing the adaptive reaction of cellular metabolism in response to hypoxia.
不同类型的微小RNA参与靶基因的转录后调控。包括miR775在内的几种缺氧依赖性微小RNA在植物细胞中的含量在缺氧条件下会增加。对玉米(L.)淹水幼苗叶片总RNA样本的电泳研究显示,在缺氧培养12小时时存在两种与miR775相互作用的复合物。对含有miR775与玉米叶片mRNA相互作用复合物的样本进行核苷酸序列分析,结果显示其与ICL/PEPM_KPHMT裂解酶家族结构域具有高度同源性。它对应于果糖-1,6-二磷酸醛缩酶mRNA的一个片段。通过实时PCR,我们确定了玉米叶片在缺氧条件下醛缩酶同工酶基因转录本含量的动态变化。醛缩酶1基因()转录活性的降低与玉米叶细胞中高含量的miR775相关。在100,000×离心沉淀的细胞外囊泡部分富含miR775。缺氧条件下醛缩酶2()mRNA转录本的积累表明,当基因表达受到抑制时,它参与维持糖酵解。我们得出结论,游离miR775总含量的增加及其对基因的抑制作用是细胞代谢对缺氧产生适应性反应的重要机制。