Abnave Prasad, Aboukhatwa Ellen, Kosaka Nobuyoshi, Thompson James, Hill Mark A, Aboobaker A Aziz
Department of Zoology, Tinbergen Building, South Parks Road, University of Oxford, Oxford OX1 3PS, UK.
CRUK/MRC Oxford Institute for Radiation Oncology, ORCRB Roosevelt Drive, University of Oxford, Oxford OX3 7DQ, UK.
Development. 2017 Oct 1;144(19):3440-3453. doi: 10.1242/dev.154971. Epub 2017 Sep 11.
Migration of stem cells underpins the physiology of metazoan animals. For tissues to be maintained, stem cells and their progeny must migrate and differentiate in the correct positions. This need is even more acute after tissue damage by wounding or pathogenic infection. Inappropriate migration also underpins metastasis. Despite this, few mechanistic studies address stem cell migration during repair or homeostasis in adult tissues. Here, we present a shielded X-ray irradiation assay that allows us to follow stem cell migration in planarians. We demonstrate the use of this system to study the molecular control of stem cell migration and show that , and EMT transcription factor homologs are necessary for cell migration to wound sites and for the establishment of migratory cell morphology. We also observed that stem cells undergo homeostatic migration to anterior regions that lack local stem cells, in the absence of injury, maintaining tissue homeostasis. This requires the polarity determinant Our work establishes planarians as a suitable model for further in-depth study of the processes controlling stem cell migration .
干细胞的迁移是后生动物生理学的基础。为了维持组织,干细胞及其后代必须在正确的位置迁移和分化。在受伤或病原体感染导致组织损伤后,这种需求更为迫切。不适当的迁移也是转移的基础。尽管如此,很少有机制研究涉及成体组织修复或稳态过程中的干细胞迁移。在这里,我们提出了一种屏蔽X射线照射试验,使我们能够追踪涡虫中的干细胞迁移。我们展示了该系统在研究干细胞迁移分子控制方面的应用,并表明 、 和EMT转录因子同源物对于细胞迁移到伤口部位和建立迁移细胞形态是必需的。我们还观察到,在没有损伤的情况下,干细胞会向缺乏局部干细胞的前部区域进行稳态迁移,以维持组织稳态。这需要极性决定因素 我们的工作确立了涡虫作为进一步深入研究控制干细胞迁移过程的合适模型。