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线粒体 ROS 对细胞间信号和分化的非细胞自主调控。

Non-cell autonomous regulation of cell-cell signaling and differentiation by mitochondrial ROS.

机构信息

Department of Physiology, UT Southwestern Medical Center, Dallas, TX, USA.

Department of Cell Biology, UT Southwestern Medical Center, Dallas, TX, USA.

出版信息

J Cell Biol. 2024 Dec 2;223(12). doi: 10.1083/jcb.202401084. Epub 2024 Nov 13.

Abstract

Mitochondrial reactive oxygen species (ROS) function intrinsically within cells to induce cell damage, regulate transcription, and cause genome instability. However, we know little about how mitochondrial ROS production non-cell autonomously impacts cell-cell signaling. Here, we show that mitochondrial dysfunction inhibits the plasma membrane localization of cell surface receptors that drive cell-cell communication during oogenesis. Within minutes, we found that mitochondrial ROS impairs exocyst membrane binding and leads to defective endosomal recycling. This endosomal defect impairs the trafficking of receptors, such as the Notch ligand Delta, during oogenesis. Remarkably, we found that overexpressing RAB11 restores ligand trafficking and rescues the developmental defects caused by ROS production. ROS production from adjacent cells acutely initiates a transcriptional response associated with growth and migration by suppressing Notch signaling and inducing extra cellualr matrix (ECM) remodeling. Our work reveals a conserved rapid response to ROS production that links mitochondrial dysfunction to the non-cell autonomous regulation of cell-cell signaling.

摘要

线粒体活性氧(ROS)在细胞内固有地发挥作用,引起细胞损伤、调节转录并导致基因组不稳定。然而,我们对线粒体 ROS 产生非细胞自主地影响细胞间信号传递的方式知之甚少。在这里,我们表明线粒体功能障碍抑制了驱动卵母细胞发生过程中细胞间通讯的细胞膜表面受体的质膜定位。我们发现,线粒体 ROS 在数分钟内损害了外核膜的结合,导致内体再循环缺陷。这种内体缺陷会损害受体(如 Notch 配体 Delta)在卵母细胞发生过程中的运输。值得注意的是,我们发现过度表达 RAB11 可以恢复配体运输,并挽救由 ROS 产生引起的发育缺陷。来自相邻细胞的 ROS 产生通过抑制 Notch 信号和诱导细胞外基质(ECM)重塑,急性引发与生长和迁移相关的转录反应。我们的工作揭示了一种保守的快速反应机制,该机制将线粒体功能障碍与细胞间信号的非自主调节联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29ed/11561560/b8f15674019e/JCB_202401084_Fig1.jpg

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