Fujimoto Yukari, Nakazawa Naotaka
Graduate School of Science and Engineering, Kindai University, Higashiosaka, Japan.
Department of Energy and Materials, Faculty of Science and Engineering, Kindai University, Higashiosaka, Japan.
Front Cell Dev Biol. 2024 Jul 26;12:1431690. doi: 10.3389/fcell.2024.1431690. eCollection 2024.
The cell has multiple mechanisms for sensing and responding to dynamic changes in the mechanical environment. In the process, intracellular signaling is activated to modulate gene expression. Recent studies have shown that multifunctional signaling molecules that link intracellular force and gene expression are important for understanding cellular functions in the mechanical environment. This review discusses recent studies on one of the mechanotransducers, Four-and-a-half LIM domains 2 (FHL2), which localizes to focal adhesions (FAs), actin cytoskeleton, and nucleus. FHL2 localizes to FAs and the actin cytoskeleton in the cell on stiff substrate. In this situation, intracellular tension of F-actin by Myosin II is critical for FHL2 localization to FAs and actin stress fibers. In the case, a conserved phenylalanine in each LIM domain is responsible for its localization to F-actin. On the other hand, lower tension of F-actin in the cell on a soft substrate causes FHL2 to be released into the cytoplasm, resulting in its localization in the nucleus. At the molecular level, phosphorylation of specific tyrosine in FHL2 by FAK, non-receptor tyrosine kinase, is critical to nuclear localization. Finally, by binding to transcription factors, FHL2 modulates gene expression for cell proliferation as a transcriptional co-factor. Thus, FHL2 is involved in mechano-sensing and -transduction in the cell in a mechanical environment.
细胞具有多种机制来感知和响应机械环境中的动态变化。在此过程中,细胞内信号被激活以调节基因表达。最近的研究表明,连接细胞内力和基因表达的多功能信号分子对于理解细胞在机械环境中的功能很重要。本综述讨论了对一种机械转导分子——四又二分之一LIM结构域2(FHL2)的最新研究,该分子定位于粘着斑(FAs)、肌动蛋白细胞骨架和细胞核。在坚硬底物上的细胞中,FHL2定位于FAs和肌动蛋白细胞骨架。在这种情况下,肌球蛋白II对F-肌动蛋白产生的细胞内张力对于FHL2定位于FAs和肌动蛋白应力纤维至关重要。在这种情况下,每个LIM结构域中保守的苯丙氨酸负责其定位于F-肌动蛋白。另一方面,在柔软底物上的细胞中,F-肌动蛋白的张力较低会导致FHL2释放到细胞质中,从而使其定位于细胞核。在分子水平上,非受体酪氨酸激酶FAK对FHL2中特定酪氨酸的磷酸化对于核定位至关重要。最后,通过与转录因子结合,FHL2作为转录辅因子调节细胞增殖的基因表达。因此,FHL2参与了细胞在机械环境中的机械传感和转导。