Liu Liwang, Simon Marina, Muggiolu Giovanna, Vilotte Florent, Antoine Mikael, Caron Jerôme, Kantor Guy, Barberet Philippe, Seznec Hervé, Audoin Bertrand
Univ. Bordeaux, CNRS, I2M, UMR 5295, F-33400 Talence, France.
Univ. Bordeaux, CNRS, CENBG, UMR 5797, F-33170 Gradignan, France.
Photoacoustics. 2022 Jul 11;27:100385. doi: 10.1016/j.pacs.2022.100385. eCollection 2022 Sep.
How DNA damage and repair processes affect the biomechanical properties of the nucleus interior remains unknown. Here, an opto-acoustic microscope based on time-domain Brillouin spectroscopy (TDBS) was used to investigate the induced regulation of intra-nuclear mechanics. With this ultrafast pump-probe technique, coherent acoustic phonons were tracked along their propagation in the intra-nucleus nanostructure and the complex stiffness moduli and thicknesses were measured with an optical resolution. Osteosarcoma cells were exposed to methyl methanesulfonate (MMS) and the presence of DNA damage was tested using immunodetection targeted against damage signaling proteins. TDBS revealed that the intra-nuclear storage modulus decreased significantly upon exposure to MMS, as a result of the chromatin decondensation and reorganization that favors molecular diffusion within the organelle. When the damaging agent was removed and cells incubated for 2 h in the buffer solution before fixation the intra-nuclear reorganization led to an inverse evolution of the storage modulus, the nucleus stiffened. The same tendency was measured when DNA double-strand breaks were caused by cell exposure to ionizing radiation. TDBS microscopy also revealed changes in acoustic dissipation, another mechanical probe of the intra-nucleus organization at the nano-scale, and changes in nucleus thickness during exposure to MMS and after recovery.
DNA损伤和修复过程如何影响细胞核内部的生物力学特性仍然未知。在此,基于时域布里渊光谱(TDBS)的光声显微镜被用于研究细胞核内力学的诱导调节。利用这种超快泵浦-探测技术,相干声子在细胞核纳米结构中的传播过程被追踪,并且以光学分辨率测量了复刚度模量和厚度。骨肉瘤细胞暴露于甲磺酸甲酯(MMS),并使用针对损伤信号蛋白的免疫检测来测试DNA损伤的存在。TDBS显示,由于染色质解聚和重组有利于细胞器内的分子扩散,暴露于MMS后细胞核储能模量显著降低。当去除损伤剂并在固定前将细胞在缓冲溶液中孵育2小时,细胞核内重组导致储能模量反向变化,细胞核变硬。当细胞暴露于电离辐射导致DNA双链断裂时,也测量到了相同的趋势。TDBS显微镜还揭示了声耗散的变化,这是纳米尺度细胞核内组织的另一种力学探针,以及在暴露于MMS期间和恢复后细胞核厚度的变化。