Department of Life Sciences, University of Trieste, 34127 Trieste, Italy.
Nano Innovation Laboratory, Elettra-Sincrotrone Trieste S.C.p.A., 34149 Trieste, Italy.
Int J Mol Sci. 2019 Jun 4;20(11):2733. doi: 10.3390/ijms20112733.
Plasticity is an essential condition for cancer cells to invade surrounding tissues. The nucleus is the most rigid cellular organelle and it undergoes substantial deformations to get through environmental constrictions. Nuclear stiffness mostly depends on the nuclear lamina and chromatin, which in turn might be affected by nuclear architectural proteins. Among these is the HMGA1 (High Mobility Group A1) protein, a factor that plays a causal role in neoplastic transformation and that is able to disentangle heterochromatic domains by H1 displacement. Here we made use of atomic force microscopy to analyze the stiffness of breast cancer cellular models in which we modulated HMGA1 expression to investigate its role in regulating nuclear plasticity. Since histone H1 is the main modulator of chromatin structure and HMGA1 is a well-established histone H1 competitor, we correlated HMGA1 expression and cellular stiffness with histone H1 expression level, post-translational modifications, and nuclear distribution. Our results showed that HMGA1 expression level correlates with nuclear stiffness, is associated to histone H1 phosphorylation status, and alters both histone H1 chromatin distribution and expression. These data suggest that HMGA1 might promote chromatin relaxation through a histone H1-mediated mechanism strongly impacting on the invasiveness of cancer cells.
可塑性是癌细胞侵袭周围组织的必要条件。细胞核是最坚硬的细胞细胞器,它会发生很大的变形以穿过环境的限制。核硬度主要取决于核纤层和染色质,而核纤层和染色质又可能受到核结构蛋白的影响。其中之一是 HMGA1(高迁移率族 A1)蛋白,它在肿瘤转化中起因果作用,并能够通过 H1 置换解开异染色质区域。在这里,我们利用原子力显微镜分析了乳腺癌细胞模型的硬度,我们通过调节 HMGA1 的表达来研究其在调节核可塑性中的作用。由于组蛋白 H1 是染色质结构的主要调节剂,而 HMGA1 是一种公认的组蛋白 H1 竞争者,我们将 HMGA1 的表达与细胞硬度与组蛋白 H1 的表达水平、翻译后修饰和核分布相关联。我们的结果表明,HMGA1 的表达水平与核硬度相关,与组蛋白 H1 的磷酸化状态有关,并改变组蛋白 H1 染色质的分布和表达。这些数据表明,HMGA1 可能通过组蛋白 H1 介导的机制促进染色质松弛,从而强烈影响癌细胞的侵袭性。