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首页> 外文期刊>Development >SDQR migrations in Caenorhabditis elegans are controlled by multiple guidance cues and changing responses to netrin UNC-6.
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SDQR migrations in Caenorhabditis elegans are controlled by multiple guidance cues and changing responses to netrin UNC-6.

机译:秀丽隐杆线虫中的SDQR迁移受多种引导线索和对netrin UNC-6的响应变化的控制。

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摘要

The netrin guidance cue, UNC-6, and the netrin receptors, UNC-5 and UNC-40, guide SDQR cell and axon migrations in C. elegans. In wild-type larvae, SDQR migrations are away from ventral UNC-6-expressing cells, suggesting that UNC-6 repels SDQR. In unc-6 null larvae, SDQR migrations are towards the ventral midline, indicating a response to other guidance cues that directs the migrations ventrally. Although ectopic UNC-6 expression dorsal to the SDQR cell body would be predicted to cause ventral SDQR migrations in unc-6 null larvae, in fact, more migrations are directed dorsally, suggesting that SDQR is not always repelled from the dorsal source of UNC-6. UNC-5 is required for dorsal SDQR migrations, but not for the ventral migrations in unc-6 null larvae. UNC-40 appears to moderate both the response to UNC-6 and to the other cues. Our results show that SDQR responds to multiple guidance cues and they suggest that, besides UNC-6, other factors influence whether an UNC-6 responsive cell migrates toward or away from an UNC-6 source in vivo. We propose that multiple signals elicited by the guidance cues are integrated and interpreted by SDQR and that the response to UNC-6 can change depending on the combination of cues encountered during migration. These responses determine the final dorsoventral position of the SDQR cell and axon.
机译:netrin指导信号UNC-6和netrin受体UNC-5和UNC-40指导线虫中SDQR细胞和轴突的迁移。在野生型幼虫中,SDQR迁移远离表达UNC-6的腹侧细胞,这表明UNC-6排斥SDQR。在unc-6空幼虫中,SDQR移向腹中线,表明对指导腹侧移行的其他引导线索有反应。尽管可以预测背对SDQR细胞体的UNC-6异位表达会导致unc-6空幼虫的腹侧SDQR迁移,但实际上,更多的迁移是背向的,这表明SDQR并不总是从UNC-的背源中驱除6。背面SDQR迁移需要UNC-5,而unc-6空幼虫的腹侧迁移则不需要UNC-5。 UNC-40似乎可以减轻对UNC-6和其他提示的响应。我们的研究结果表明SDQR对多种指导信号有反应,并且表明除UNC-6外,其他因素也会影响UNC-6响应细胞在体内向UNC-6来源迁移还是从其迁移。我们建议,由SDcu指导信号引发的多个信号将被整合和解释,并且对UNC-6的响应可能会根据迁移过程中遇到的信号组合而变化。这些反应决定了SDQR细胞和轴突的最终背腹位置。

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