Laboratory of Cell Biology and Histology, Department of Veterinary Sciences, University of Antwerp, 2610, Antwerp, Belgium.
Laboratory of General Biochemistry and Physical Pharmacy, Faculty of Pharmaceutical Sciences, Ghent University, 9000, Ghent, Belgium.
Cell Mol Life Sci. 2022 Jan 4;79(1):23. doi: 10.1007/s00018-021-04099-9.
Vapor nanobubble (VNB) photoporation is a physical method for intracellular delivery that has gained significant interest in the past decade. It has successfully been used to introduce molecular cargo of diverse nature into different cell types with high throughput and minimal cytotoxicity. For translational purposes, it is important to understand whether and how photoporation affects cell homeostasis. To obtain a comprehensive view on the transcriptional rewiring that takes place after VNB photoporation, we performed a longitudinal shotgun RNA-sequencing experiment. Six hours after photoporation, we found a marked upregulation of LMNA transcripts as well as their protein products, the A-type lamins. At the same time point, we observed a significant increase in several heterochromatin marks, suggesting a global stiffening of the nucleus. These molecular features vanished 24 h after photoporation. Since VNB-induced chromatin condensation was prolonged in LMNA knockout cells, A-type lamins may be required for restoring the nucleus to its original state. Selective depletion of A-type lamins reduced cell viability after VNB photoporation, while pharmacological stimulation of LMNA transcription increased the percentage of successfully transfected cells that survived after photoporation. Therefore, our results suggest that cells respond to VNB photoporation by temporary upregulation of A-type lamins to facilitate their recovery.
蒸汽纳米气泡(VNB)光穿孔是一种用于细胞内递药的物理方法,在过去十年中引起了广泛关注。它已成功用于将不同性质的分子货物高效、低细胞毒性地递送至不同的细胞类型。出于转化的目的,了解光穿孔是否以及如何影响细胞内稳态非常重要。为了全面了解 VNB 光穿孔后发生的转录重排,我们进行了纵向 shotgun RNA 测序实验。光穿孔后 6 小时,我们发现 LMNA 转录本及其蛋白质产物 A 型核纤层显著上调。与此同时,我们观察到几种异染色质标记显著增加,表明核整体变硬。这些分子特征在光穿孔后 24 小时消失。由于 VNB 诱导的染色质凝聚在 LMNA 敲除细胞中延长,A 型核纤层可能是恢复核原始状态所必需的。选择性耗尽 A 型核纤层会降低光穿孔后的细胞活力,而 LMNA 转录的药理学刺激会增加光穿孔后存活的成功转染细胞的百分比。因此,我们的结果表明,细胞通过暂时上调 A 型核纤层来应对 VNB 光穿孔,以促进其恢复。