Juda Pavel, Smigová Jana, Kováčik Lubomír, Bártová Eva, Raška Ivan
Charles University in Prague, First Faculty of Medicine, Institute of Cellular Biology and Pathology, Czech Republic (PJ, JS, LK, IR)Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Brno, Czech Republic (EB)
Charles University in Prague, First Faculty of Medicine, Institute of Cellular Biology and Pathology, Czech Republic (PJ, JS, LK, IR)Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Brno, Czech Republic (EB).
J Histochem Cytochem. 2014 Oct;62(10):739-50. doi: 10.1369/0022155414543853. Epub 2014 Jun 30.
Inosine-5'-monophosphate dehydrogenase catalyzes the critical step in the de novo synthesis of guanosine nucleotides: the oxidation of inosine monophosphate to xanthosine monophosphate. This reaction can be inhibited by specific inhibitors, such as ribavirin or mycophenolic acid, which are widely used in clinical treatment when required to inhibit the proliferation of viruses or cells. However, it was recently found that such an inhibition affects the cells, leading to a redistribution of IMPDH2 and the appearance of IMPDH2 inclusions in the cytoplasm. According to their shape, these inclusions have been termed "Rods and Rings" (R&R). In this work, we focused on the subcellular localization of IMPDH2 protein and the ultrastructure of R&R inclusions. Using microscopy and western blot analysis, we show the presence of nuclear IMPDH2 in human cells. We also show that the nuclear pool has an ability to form Rod structures after inhibition by ribavirin. Concerning the ultrastructure, we observed that R&R inclusions in cellulo correspond to the accumulation of fibrous material that is not surrounded by a biological membrane. The individual fibers are composed of regularly repeating subunits with a length of approximately 11 nm. Together, our findings describe the localization of IMPDH2 inside the nucleus of human cells as well as the ultrastructure of R&R inclusions.
肌苷-5'-单磷酸脱氢酶催化鸟苷核苷酸从头合成中的关键步骤:肌苷单磷酸氧化为黄嘌呤单磷酸。该反应可被特定抑制剂抑制,如利巴韦林或霉酚酸,在临床治疗中需要抑制病毒或细胞增殖时广泛使用。然而,最近发现这种抑制会影响细胞,导致IMPDH2重新分布并在细胞质中出现IMPDH2包涵体。根据其形状,这些包涵体被称为“杆状物和环状物”(R&R)。在这项工作中,我们重点研究了IMPDH2蛋白的亚细胞定位以及R&R包涵体的超微结构。通过显微镜检查和蛋白质印迹分析,我们显示了人细胞中核IMPDH2的存在。我们还表明,核池在被利巴韦林抑制后有形成杆状结构的能力。关于超微结构,我们观察到细胞内的R&R包涵体对应于未被生物膜包围的纤维状物质的积累。单个纤维由长度约为11nm的规则重复亚基组成。总之,我们的研究结果描述了IMPDH2在人细胞核内的定位以及R&R包涵体的超微结构。