Hernández-Cáceres Maria Paz, Munoz Leslie, Pradenas Javiera M, Pena Francisco, Lagos Pablo, Aceiton Pablo, Owen Gareth I, Morselli Eugenia, Criollo Alfredo, Ravasio Andrea, Bertocchi Cristina
Laboratory of Autophagy and Metabolism, Department of Physiology, Faculty of Biological Sciences, Pontificia Universidad Católica De Chile, Santiago, Chile.
Laboratory for Mechanobiology of Transforming Systems, Institute for Biological and Medical Engineering, Schools of Engineering, Medicine and Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.
Front Oncol. 2021 Feb 26;11:632956. doi: 10.3389/fonc.2021.632956. eCollection 2021.
Proper execution of cellular function, maintenance of cellular homeostasis and cell survival depend on functional integration of cellular processes and correct orchestration of cellular responses to stresses. Cancer transformation is a common negative consequence of mismanagement of coordinated response by the cell. In this scenario, by maintaining the balance among synthesis, degradation, and recycling of cytosolic components including proteins, lipids, and organelles the process of autophagy plays a central role. Several environmental stresses activate autophagy, among those hypoxia, DNA damage, inflammation, and metabolic challenges such as starvation. In addition to these chemical challenges, there is a requirement for cells to cope with mechanical stresses stemming from their microenvironment. Cells accomplish this task by activating an intrinsic mechanical response mediated by cytoskeleton active processes and through mechanosensitive protein complexes which interface the cells with their mechano-environment. Despite autophagy and cell mechanics being known to play crucial transforming roles during oncogenesis and malignant progression their interplay is largely overlooked. In this review, we highlight the role of physical forces in autophagy regulation and their potential implications in both physiological as well as pathological conditions. By taking a mechanical perspective, we wish to stimulate novel questions to further the investigation of the mechanical requirements of autophagy and appreciate the extent to which mechanical signals affect this process.
细胞功能的正确执行、细胞内稳态的维持以及细胞存活取决于细胞过程的功能整合以及细胞对应激反应的正确调控。癌症转变是细胞协调反应管理不善的常见负面后果。在这种情况下,自噬过程通过维持包括蛋白质、脂质和细胞器在内的胞质成分的合成、降解和再循环之间的平衡发挥核心作用。几种环境应激会激活自噬,其中包括缺氧、DNA损伤、炎症以及饥饿等代谢挑战。除了这些化学挑战外,细胞还需要应对来自其微环境的机械应激。细胞通过激活由细胞骨架活性过程介导的内在机械反应以及通过将细胞与其机械环境相连接的机械敏感蛋白复合物来完成这项任务。尽管已知自噬和细胞力学在肿瘤发生和恶性进展过程中发挥关键的转变作用,但它们之间的相互作用在很大程度上被忽视了。在这篇综述中,我们强调物理力在自噬调节中的作用及其在生理和病理条件下的潜在影响。从力学角度出发,我们希望激发新的问题,以进一步研究自噬的力学需求,并了解机械信号对这一过程的影响程度。