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机械敏感性 TRPV4 通道指导双层乳腺上皮细胞的成熟和组织。

Mechanosensitive TRPV4 channel guides maturation and organization of the bilayered mammary epithelium.

机构信息

Department of Applied Physics, School of Science, Aalto University, Espoo, Finland.

Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.

出版信息

Sci Rep. 2024 Mar 21;14(1):6774. doi: 10.1038/s41598-024-57346-x.

Abstract

Biophysical cues from the cell microenvironment are detected by mechanosensitive components at the cell surface. Such machineries convert physical information into biochemical signaling cascades within cells, subsequently leading to various cellular responses in a stimulus-dependent manner. At the surface of extracellular environment and cell cytoplasm exist several ion channel families that are activated by mechanical signals to direct intracellular events. One of such channel is formed by transient receptor potential cation channel subfamily V member, TRPV4 that is known to act as a mechanosensor in wide variaty of tissues and control ion-influx in a spatio-temporal way. Here we report that TRPV4 is prominently expressed in the stem/progenitor cell populations of the mammary epithelium and seems important for the lineage-specific differentiation, consequently affecting mechanical features of the mature mammary epithelium. This was evident by the lack of several markers for mature myoepithelial and luminal epithelial cells in TRPV4-depleted cell lines. Interestingly, TRPV4 expression is controlled in a tension-dependent manner and it also impacts differentation process dependently on the stiffness of the microenvironment. Furthermore, such cells in a 3D compartment were disabled to maintain normal mammosphere structures and displayed abnormal lumen formation, size of the structures and disrupted cellular junctions. Mechanosensitive TRPV4 channel therefore act as critical player in the homeostasis of normal mammary epithelium through sensing the physical environment and guiding accordingly differentiation and structural organization of the bilayered mammary epithelium.

摘要

细胞微环境中的生物物理线索被细胞表面的机械敏感成分检测到。这些机械装置将物理信息转化为细胞内的生化信号级联,随后以刺激依赖的方式导致各种细胞反应。在细胞外环境和细胞质的表面存在几种离子通道家族,它们被机械信号激活,以指导细胞内事件。其中一种通道由瞬时受体电位阳离子通道亚家族 V 成员 TRPV4 形成,TRPV4 作为多种组织中的机械感受器,以时空方式控制离子流入。在这里,我们报告 TRPV4 在乳腺上皮的干细胞/祖细胞群体中明显表达,似乎对谱系特异性分化很重要,从而影响成熟乳腺上皮的机械特征。这在 TRVP4 耗尽的细胞系中缺乏几种成熟肌上皮和腔上皮细胞标志物的情况下是显而易见的。有趣的是,TRPV4 的表达受到张力的调控,并且它还依赖于微环境的硬度独立地影响分化过程。此外,这种在 3D 隔室中的细胞无法维持正常的乳腺球体结构,并显示出异常的管腔形成、结构大小和细胞连接中断。因此,机械敏感的 TRPV4 通道作为正常乳腺上皮稳态的关键参与者,通过感知物理环境并相应地指导双层乳腺上皮的分化和结构组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64ec/10957991/fbfa00884085/41598_2024_57346_Fig1_HTML.jpg

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