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Critical roles for EphB and ephrin-B bidirectional signalling in retinocollicular mapping

机译:EphB和ephrin-B双向信号传导在视网膜胶状体映射中的关键作用

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Graded expression of EphB and ephrin-B along the dorsoventral axis of the retina indicates a role for these bidirectional signalling molecules in dorsoventral–mediolateral retinocollicular mapping. Although previous studies have implicated EphB2 forward signalling in mice, the intracellular component of EphB2 essential for retinocollicular mapping is unknown as are the roles for EphB1, ephrin-B1, and ephrin-B2. Here we show that EphB2 tyrosine kinase catalytic activity and EphB1 intracellular signalling are key mediators of ventral–temporal retinal ganglion cell axon retinocollicular mapping, by likely interacting with ephrin-B1 in the superior colliculus. We further elucidate roles for the ephrin-B2 intracellular domain in retinocollicular mapping and present the unexpected finding that both dorsal and ventral–temporal retinal ganglion cell axons utilize reverse signalling for topographic mapping. These data demonstrate that both forward and reverse signalling initiated by EphB:ephrin-B interactions have a major role in dorsoventral retinal ganglion cell axon termination along the mediolateral axis of the superior colliculus.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:EphB和ephrin-B沿视网膜背腹轴的分级表达表明这些双向信号分子在背腹-内侧外侧视网膜胶质标测中的作用。尽管先前的研究已暗示EphB2正向信号传导在小鼠中,但视网膜胶体作图所必需的EphB2的细胞内成分以及EphB1,ephrin-B1和ephrin-B2的作用尚不清楚。在这里,我们显示EphB2酪氨酸激酶的催化活性和EphB1的细胞内信号传导是腹-时空视网膜神经节细胞轴突视网膜胶状体映射的关键介体,因为它可能与上丘中的ephrin-B1相互作用。我们进一步阐明了ephrin-B2胞内结构域在视网膜胶状细胞测绘中的作用,并提出了意想不到的发现,即背侧和腹-颞视网膜神经节细胞轴突均利用反向信号进行地形图测绘。这些数据表明,由EphB:ephrin-B相互作用引发的正向和反向信号在沿上丘的后外侧轴的背腹视网膜神经节细胞轴突终止中起主要作用。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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