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Cytoplasmic polyadenylation and cytoplasmic polyadenylation element-dependent mRNA regulation are involved in Xenopus retinal axon development.

机译:细胞质多腺苷酸化和细胞质多腺苷酸化元件依赖的mRNA调节参与非洲爪蟾视网膜轴突的发展。

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摘要

BACKGROUND: Translation in axons is required for growth cone chemotropic responses to many guidance cues. Although locally synthesized proteins are beginning to be identified, how specific mRNAs are selected for translation remains unclear. Control of poly(A) tail length by cytoplasmic polyadenylation element (CPE) binding protein 1 (CPEB1) is a conserved mechanism for mRNA-specific translational regulation that could be involved in regulating translation in axons. RESULTS: We show that cytoplasmic polyadenylation is required in Xenopus retinal ganglion cell (RGC) growth cones for translation-dependent, but not translation-independent, chemotropic responses in vitro, and that inhibition of CPE binding through dominant-negative interference severely reduces axon outgrowth in vivo. CPEB1 mRNA transcripts are present at low levels in RGCs but, surprisingly, CPEB1 protein was not detected in eye or brain tissue, and CPEB1 loss-of-function does not affect chemotropic responses or pathfinding in vivo. UV cross-linking experiments suggest that CPE-binding proteins other than CPEB1 in the retina regulate retinal axon development. CONCLUSION: These results indicate that cytoplasmic polyadenylation and CPE-mediated translational regulation are involved in retinal axon development, but that CPEB1 may not be the key regulator of polyadenylation in the developing retina.
机译:背景:轴突的翻译是生长锥对许多指导线索的趋化反应所必需的。尽管已经开始鉴定出本地合成的蛋白质,但如何选择特定的mRNA进行翻译仍不清楚。通过胞质聚腺苷酸化元件(CPE)结合蛋白1(CPEB1)控制poly(A)尾巴长度是mRNA特异性翻译调控的保守机制,可能参与调节轴突的翻译。结果:我们显示非洲爪蟾视网膜神经节细胞(RGC)生长锥中需要细胞质多腺苷酸来实现体外的翻译依赖性而非非翻译依赖性的化学反应,并且通过显性-阴性干扰抑制CPE结合会严重减少轴突的生长体内。 CPEB1 mRNA转录物在RGC中的含量很低,但是令人惊讶的是,在眼睛或脑组织中未检测到CPEB1蛋白,CPEB1功能丧失不影响体内的趋化反应或寻路。紫外线交联实验表明,除CPEB1外,视网膜中的CPE结合蛋白还调节视网膜轴突的发育。结论:这些结果表明细胞质聚腺苷酸化和CPE介导的翻译调控参与视网膜轴突的发展,但CPEB1可能不是视网膜发育中聚腺苷酸化的关键调节剂。

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