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唾液腺组织重组可以改变细胞命运。

Salivary Gland Tissue Recombination Can Modify Cell Fate.

机构信息

Cell Biology Section, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD, USA.

Genomics and Computational Biology Core, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD, USA.

出版信息

J Dent Res. 2024 Jul;103(7):755-764. doi: 10.1177/00220345241247484. Epub 2024 May 7.

Abstract

Although mesenchyme is essential for inducing the epithelium of ectodermal organs, its precise role in organ-specific epithelial fate determination remains poorly understood. To elucidate the roles of tissue interactions in cellular differentiation, we performed single-cell RNA sequencing and imaging analyses on recombined tissues, where mesenchyme and epithelium were switched ex vivo between two types of embryonic mouse salivary glands: the parotid gland (a serous gland) and the submandibular gland (a predominantly mucous gland). We found partial induction of molecules that define gland-specific acinar and myoepithelial cells in recombined salivary epithelium. The parotid epithelium recombined with submandibular mesenchyme began to express mucous acinar genes not intrinsic to the parotid gland. While myoepithelial cells do not normally line parotid acini, newly induced myoepithelial cells densely populated recombined parotid acini. However, mucous acinar and myoepithelial markers continued to be expressed in submandibular epithelial cells recombined with parotid mesenchyme. Consequently, some epithelial cells appeared to be plastic, such that their fate could still be modified in response to mesenchymal signaling, whereas other epithelial cells appeared to be already committed to a specific fate. We also discovered evidence for bidirectional induction: transcriptional changes were observed not only in the epithelium but also in the mesenchyme after heterotypic tissue recombination. For example, parotid epithelium induced the expression of muscle-related genes in submandibular fibroblasts that began to mimic parotid fibroblast gene expression. These studies provide the first comprehensive unbiased molecular characterization of tissue recombination approaches exploring the regulation of cell fate.

摘要

尽管间质对于诱导外胚层器官的上皮组织至关重要,但它在器官特异性上皮细胞命运决定中的精确作用仍知之甚少。为了阐明组织相互作用在细胞分化中的作用,我们对重组组织进行了单细胞 RNA 测序和成像分析,其中外胚层来源的间质和上皮在两种类型的胚胎鼠唾液腺之间进行了体外交换:腮腺(浆液腺)和颌下腺(主要为黏液腺)。我们发现,在重组的唾液上皮组织中,部分诱导了定义腺体特异性腺泡和肌上皮细胞的分子。与颌下腺间质重组的腮腺上皮开始表达与腮腺固有基因不同的黏液腺泡基因。虽然肌上皮细胞通常不在腮腺腺泡中排列,但新诱导的肌上皮细胞密集分布在重组的腮腺腺泡中。然而,在与腮腺间质重组的颌下腺上皮细胞中,仍然表达黏液腺泡和肌上皮标志物。因此,一些上皮细胞似乎具有可塑性,它们的命运仍然可以响应间质信号进行修改,而其他上皮细胞似乎已经决定了特定的命运。我们还发现了双向诱导的证据:不仅在重组后的上皮组织中,而且在间质组织中都观察到了转录变化。例如,腮腺上皮在颌下腺成纤维细胞中诱导了与肌肉相关的基因表达,这些成纤维细胞开始模拟腮腺成纤维细胞的基因表达。这些研究提供了第一个全面的、无偏倚的分子特征描述,探索了组织重组方法对细胞命运的调控。

相似文献

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Salivary Gland Tissue Recombination Can Modify Cell Fate.唾液腺组织重组可以改变细胞命运。
J Dent Res. 2024 Jul;103(7):755-764. doi: 10.1177/00220345241247484. Epub 2024 May 7.

本文引用的文献

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Generation of a Single-Cell RNAseq Atlas of Murine Salivary Gland Development.小鼠唾液腺发育的单细胞RNA测序图谱的生成
iScience. 2020 Nov 20;23(12):101838. doi: 10.1016/j.isci.2020.101838. eCollection 2020 Dec 18.

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