Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, 612 65 Brno, Czech Republic.
Department of Experimental Biology, Faculty of Science, Masaryk University, Kamenice 753/5, 625 00 Brno, Czech Republic.
Cells. 2021 Feb 1;10(2):297. doi: 10.3390/cells10020297.
The essential components of splicing are the splicing factors accumulated in nuclear speckles; thus, we studied how DNA damaging agents and A-type lamin depletion affect the properties of these regions, positive on the SC-35 protein. We observed that inhibitor of PARP (oly (ADP-ribose) polymerase) and more pronouncedly inhibitors of RNA polymerases, caused DNA damage and increased the SC35 protein level. Interestingly, nuclear blebs, induced by PARP inhibitor and observed in A-type lamin-depleted or senescent cells, were positive on both the SC-35 protein and another component of the spliceosome, SRRM2. In the interphase cell nuclei, SC-35 interacted with the phosphorylated form of RNAP II, which was A-type lamin-dependent. In mitotic cells, especially in telophase, the SC35 protein formed a well-visible ring in the cytoplasmic fraction and colocalized with β-catenin, associated with the plasma membrane. The antibody against the SRRM2 protein showed that nuclear speckles are already established in the cytoplasm of the late telophase and at the stage of early cytokinesis. In addition, we observed the occurrence of splicing factors in the nuclear blebs and micronuclei, which are also sites of both transcription and splicing. This conclusion supports the fact that splicing proceeds transcriptionally. According to our data, this process is A-type lamin-dependent. Lamin depletion also reduces the interaction between SC35 and β-catenin in mitotic cells.
剪接的基本组成部分是在核斑中积累的剪接因子;因此,我们研究了 DNA 损伤剂和 A 型层粘连蛋白耗竭如何影响这些区域的特性,这些区域在 SC-35 蛋白上呈阳性。我们观察到 PARP 抑制剂(聚(ADP-核糖)聚合酶)和更明显的 RNA 聚合酶抑制剂会引起 DNA 损伤并增加 SC35 蛋白水平。有趣的是,PARP 抑制剂诱导的核泡以及在 A 型层粘连蛋白耗尽或衰老细胞中观察到的核泡,在 SC-35 蛋白和剪接体的另一个组成部分 SRRM2 上均呈阳性。在有丝分裂间期细胞核中,SC-35 与 RNAP II 的磷酸化形式相互作用,而这种形式依赖于 A 型层粘连蛋白。在有丝分裂细胞中,特别是在末期,SC35 蛋白在细胞质部分形成一个清晰可见的环,并与与质膜相关的β-连环蛋白共定位。针对 SRRM2 蛋白的抗体表明,核斑已经在末期的细胞质中以及早期胞质分裂阶段建立。此外,我们观察到剪接因子在核泡和微核中的发生,微核也是转录和剪接的部位。这一结论支持了转录过程中进行剪接的事实。根据我们的数据,这个过程依赖于 A 型层粘连蛋白。层粘连蛋白耗竭也减少了有丝分裂细胞中 SC35 与β-连环蛋白之间的相互作用。