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Control of cell migration in the development of the posterior lateral line: antagonistic interactions between the chemokine receptors CXCR4 and CXCR7/RDC1

机译:在后侧线发育中控制细胞迁移:趋化因子受体CXCR4和CXCR7 / RDC1之间的拮抗相互作用

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Background The formation of the posterior lateral line of teleosts depends on the migration of a primordium that originates near the otic vesicle and moves to the tip of the tail. Groups of cells at the trailing edge of the primordium slow down at regular intervals and eventually settle to differentiate as sense organs. The migration of the primordium is driven by the chemokine SDF1 and by its receptor CXCR4, encoded respectively by the genes sdf1a and cxcr4b. cxcr4b is expressed in the migrating cells and is down-regulated in the trailing cells of the primordium. sdf1a is expressed along the path of migration. There is no evidence for a gradient of sdf1a expression, however, and the origin of the directionality of migration is not known. Results Here we document the expression of a second chemokine receptor gene, cxcr7, in the migrating primordium. We show that cxcr7 is highly expressed in the trailing cells of the primordium but not at all in the leading cells, a pattern that is complementary to that of cxcr4b. Even though cxcr7 is not expressed in the cells that lead primordium migration, its inactivation results in impaired migration. The phenotypes of cxcr4b, cxcr7 double morphant embryos suggest, however, that CXCR7 does not contribute to the migratory capabilities of primordium cells. We also show that, in the absence of cxcr4b, expression of cxcr7 becomes ubiquitous in the stalled primordium. Conclusion Our observations suggest that CXCR7 is required to provide directionality to the migration. We propose that directionality is imposed on the primordium as soon as it comes in contact with the stripe of SDF1, and is maintained throughout migration by a negative interaction between the two receptors.
机译:背景硬骨鱼的后外侧线的形成取决于原基的迁移,该原基起源于耳小泡,并移至尾尖。在原基尾缘的细胞群以规则的间隔减速,并最终沉降以分化为有感觉器官。原基的迁移是由趋化因子SDF1及其受体CXCR4驱动的,它们分别由基因sdf1a和cxcr4b编码。 cxcr4b在迁移细胞中表达,并在原基的尾随细胞中下调。 sdf1a沿迁移路径表达。没有证据表明sdf1a表达存在梯度,并且迁移方向性的起源尚不清楚。结果在这里,我们记录了第二个趋化因子受体基因cxcr7在迁移原基中的表达。我们显示cxcr7在原基的尾随细胞中高度表达,但在前导细胞中根本不表达,该模式与cxcr4b互补。即使cxcr7在导致原基迁移的细胞中未表达,其失活也会导致迁移受损。 cxcr4b,cxcr7双突变体胚胎的表型表明,但是,CXCR7并不有助于原基细胞的迁移能力。我们还显示,在不存在cxcr4b的情况下,cxcr7的表达在停滞的原基中无处不在。结论我们的观察结果表明需要CXCR7为迁移提供方向性。我们建议一旦与SDF1条纹接触,就将方向性施加在原基上,并通过两个受体之间的负性相互作用在整个迁移过程中保持方向性。

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