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鉴定细胞间缝隙连接中的 CD133 连接体,以抵消细胞内信号缺失。

Identification of CD133 intercellsomes in intercellular communication to offset intracellular signal deficit.

机构信息

Department of Pathology, Department of Molecular Biology, and Moores Cancer Center, University of California at San Diego, La Jolla, United States.

Institute of Pathology, University of Regensburg, Regensburg, Germany.

出版信息

Elife. 2023 Oct 17;12:RP86824. doi: 10.7554/eLife.86824.

Abstract

CD133 (prominin 1) is widely viewed as a cancer stem cell marker in association with drug resistance and cancer recurrence. Herein, we report that with impaired RTK-Shp2-Ras-Erk signaling, heterogenous hepatocytes form clusters that manage to divide during mouse liver regeneration. These hepatocytes are characterized by upregulated CD133 while negative for other progenitor cell markers. Pharmaceutical inhibition of proliferative signaling also induced CD133 expression in various cancer cell types from multiple animal species, suggesting an inherent and common mechanism of stress response. Super-resolution and electron microscopy localize CD133 on intracellular vesicles that apparently migrate between cells, which we name 'intercellsome.' Isolated CD133 intercellsomes are enriched with mRNAs rather than miRNAs. Single-cell RNA sequencing reveals lower intracellular diversity (entropy) of mitogenic mRNAs in Shp2-deficient cells, which may be remedied by intercellular mRNA exchanges between CD133 cells. CD133-deficient cells are more sensitive to proliferative signal inhibition in livers and intestinal organoids. These data suggest a mechanism of intercellular communication to compensate for intracellular signal deficit in various cell types.

摘要

CD133(prominin 1)被广泛认为与耐药性和癌症复发有关,是癌症干细胞的标志物。在此,我们报告说,由于 RTK-Shp2-Ras-Erk 信号受损,异质肝细胞形成了能够在小鼠肝再生期间分裂的簇。这些肝细胞的特征是上调 CD133,而其他祖细胞标志物呈阴性。抑制增殖信号的药物抑制也能诱导多种动物来源的不同癌细胞类型表达 CD133,表明这是一种固有的、常见的应激反应机制。超分辨率和电子显微镜将 CD133 定位在细胞内囊泡上,这些囊泡显然在细胞之间迁移,我们将其命名为“细胞间体”。分离的 CD133 细胞间体富含 mRNA,而不是 miRNA。单细胞 RNA 测序显示 Shp2 缺陷细胞中促有丝分裂 mRNA 的细胞内多样性(熵)较低,这可以通过 CD133 细胞之间的细胞间 mRNA 交换来补救。CD133 缺陷细胞在肝脏和肠类器官中对增殖信号抑制更为敏感。这些数据表明了一种细胞间通讯的机制,以补偿各种细胞类型中的细胞内信号缺陷。

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