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Effective guidance of collective migration based on differences in cell states

机译:根据细胞状态的差异有效指导集体迁移

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Directed cell migration is important for normal animal development and physiology. The process can also be subverted by tumor cells to invade other tissues and to metastasize. Some cells, such as leukocytes, migrate individually; other cells migrate together in groups or sheets, called collective cell migration. Guidance of individually migrating cells depends critically on subcellularly localized perception and transduction of signals. For collective cell migration, guidance could result from cells within a group achieving different signaling levels, with directionality then encoded in the collective rather than in individual cells. Here we subject this collective guidance hypothesis to direct tests, using migration of border cells during Drosophila oogenesis as our model system. These cells normally use two receptor tyrosine kinases (RTKs), PDGF/VEGF-related receptor (PVR) and EGFR, to read guidance cues secreted by the oocyte. Elevated but delocalized RTK signaling in one cell of the cluster was achieved by overexpression of PVR in the absence of ligand or by overexpression of fusion receptors unable to detect Drosophila ligands; alternatively, Rac was photoactivated centrally within a single cell. In each case, one cell within the group was in a high signal state, whereas others were in low signal states. The high signal cell directed cluster movement effectively. We conclude that differences in cell signaling states are sufficient to direct collective migration and are likely a substantial contributor to normal guidance. Cell signaling states could manifest as differences in gene expression or metabolite levels and thus differ substantially from factors normally considered when analyzing eukaryotic cell guidance.
机译:定向细胞迁移对于正常的动物发育和生理至关重要。肿瘤细胞也可以破坏该过程,使其侵入其他组织并转移。一些细胞,例如白细胞,会个别迁移;其他细胞则成组或成片一起迁移,称为集体细胞迁移。单个迁移细胞的指导关键取决于亚细胞定位的感知和信号转导。对于集体细胞迁移,指导可以来自一组内的细胞达到不同的信号传导水平,然后将方向性编码在集体而不是单个细胞中。在这里,我们使用果蝇卵子发生期间边界细胞的迁移作为我们的模型系统,对这一集体指导假设进行直接测试。这些细胞通常使用两种受体酪氨酸激酶(RTK),PDGF / VEGF相关受体(PVR)和EGFR来读取卵母细胞分泌的指导信号。通过在不存在配体的情况下过表达PVR或通过过表达无法检测果蝇配体的融合受体,可以实现簇中一个细胞中RTK信号的升高,但出现局域性;或者,Rac在单个细胞中被中央光活化。在每种情况下,组中的一个单元处于高信号状态,而其他单元处于低信号状态。高信号单元有效地指导了群集运动。我们得出结论,细胞信号传导状态的差异足以指导集体迁移,并且可能是正常指导的重要因素。细胞信号传导状态可能表现为基因表达或代谢产物水平的差异,因此与分析真核细胞指导时通常考虑的因素有很大不同。

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    Institute of Molecular and Cell Biology, Proteos, Singapore 138673,Mechanobiology Institute, National University of Singapore, Singapore 117411;

    Institute of Molecular and Cell Biology, Proteos, Singapore 138673;

    Institute of Molecular and Cell Biology, Proteos, Singapore 138673;

    Institute of Molecular and Cell Biology, Proteos, Singapore 138673;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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