Jorgens Danielle M, Inman Jamie L, Wojcik Michal, Robertson Claire, Palsdottir Hildur, Tsai Wen-Ting, Huang Haina, Bruni-Cardoso Alexandre, López Claudia S, Bissell Mina J, Xu Ke, Auer Manfred
Molecular Biophysics and Integrated Bioimaging Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS Donner, Berkeley, CA 94720, USA.
Department of Biomedical Engineering, Oregon Health and Science University, 3181 Sam Jackson Park Road, Portland, OR 97239, USA.
J Cell Sci. 2017 Jan 1;130(1):177-189. doi: 10.1242/jcs.190967. Epub 2016 Aug 5.
The importance of context in regulation of gene expression is now an accepted principle; yet the mechanism by which the microenvironment communicates with the nucleus and chromatin in healthy tissues is poorly understood. A functional role for nuclear and cytoskeletal architecture is suggested by the phenotypic differences observed between epithelial and mesenchymal cells. Capitalizing on recent advances in cryogenic techniques, volume electron microscopy and super-resolution light microscopy, we studied human mammary epithelial cells in three-dimensional (3D) cultures forming growth-arrested acini. Intriguingly, we found deep nuclear invaginations and tunnels traversing the nucleus, encasing cytoskeletal actin and/or intermediate filaments, which connect to the outer nuclear envelope. The cytoskeleton is also connected both to other cells through desmosome adhesion complexes and to the extracellular matrix through hemidesmosomes. This finding supports a physical and/or mechanical link from the desmosomes and hemidesmosomes to the nucleus, which had previously been hypothesized but now is visualized for the first time. These unique structures, including the nuclear invaginations and the cytoskeletal connectivity to the cell nucleus, are consistent with a dynamic reciprocity between the nucleus and the outside of epithelial cells and tissues.
背景在基因表达调控中的重要性如今已成为公认的原则;然而,在健康组织中微环境与细胞核及染色质之间的通讯机制却鲜为人知。上皮细胞和间充质细胞之间观察到的表型差异表明了核及细胞骨架结构的功能作用。利用低温技术、体积电子显微镜和超分辨率光学显微镜的最新进展,我们研究了在形成生长停滞腺泡的三维(3D)培养物中的人乳腺上皮细胞。有趣的是,我们发现了深入细胞核的内陷和贯穿细胞核的通道,这些通道包裹着细胞骨架肌动蛋白和/或中间丝,并与核外膜相连。细胞骨架还通过桥粒黏附复合物与其他细胞相连,并通过半桥粒与细胞外基质相连。这一发现支持了从桥粒和半桥粒到细胞核的物理和/或机械联系,这一联系此前虽有假设,但现在首次得以可视化。这些独特的结构,包括核内陷以及细胞骨架与细胞核的连接,与上皮细胞和组织的细胞核与外部之间的动态相互作用相一致。