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Drosophila Syncrip binds the gurken mRNA localisation signal and regulates localised transcripts during axis specification

机译:果蝇Syncrip结合突突的mRNA定位信号,并在轴指定期间调节转录本

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In the Drosophila oocyte, mRNA transport and localised translation play a fundamental role in axis determination and germline formation of the future embryo. gurken mRNA encodes a secreted TGF-α signal that specifies dorsal structures, and is localised to the dorso-anterior corner of the oocyte via a cis-acting 64 nucleotide gurken localisation signal. Using GRNA chromatography, we characterised the biochemical composition of the ribonucleoprotein complexes that form around the gurken mRNA localisation signal in the oocyte. We identified a number of the factors already known to be involved in gurken localisation and translational regulation, such as Squid and Imp, in addition to a number of factors with known links to mRNA localisation, such as Me31B and Exu. We also identified previously uncharacterised Drosophila proteins, including the fly homologue of mammalian SYNCRIP/hnRNPQ, a component of RNA transport granules in the dendrites of mammalian hippocampal neurons. We show that Drosophila Syncrip binds specifically to gurken and oskar, but not bicoid transcripts. The loss-of-function and overexpression phenotypes of syncrip in Drosophila egg chambers show that the protein is required for correct grk and osk mRNA localisation and translational regulation. We conclude that Drosophila Syncrip is a new factor required for localisation and translational regulation of oskar and gurken mRNA in the oocyte. We propose that Syncrip/SYNCRIP is part of a conserved complex associated with localised transcripts and required for their correct translational regulation in flies and mammals.
机译:在果蝇卵母细胞中,mRNA转运和局部翻译在轴确定和未来胚胎的种系形成中起着基本作用。 gurken mRNA编码一种分泌的TGF-α信号,该信号指定了背侧结构,并通过顺式作用64核苷酸gurken定位信号定位在卵母细胞的背前角。使用GRNA色谱,我们表征了核糖核蛋白复合物的生化组成,该复合物在卵母细胞中的突厥mRNA定位信号周围形成。我们确定了许多已知与古肯定位和翻译调控有关的因素,例如Squid和Imp,以及与mRNA定位已知链接的许多因素,例如Me31B和Exu。我们还确定了以前未表征的果蝇蛋白,包括哺乳动物SYNCRIP / hnRNPQ的果蝇同源物,这是哺乳动物海马神经元树突中RNA转运颗粒的成分。我们显示,果蝇Syncrip特异地结合到gurken和oskar,但不结合二倍体转录物。果蝇卵腔中合胞的功能丧失和过表达表型表明该蛋白是正确的grk和osk mRNA定位和翻译调控所必需的。我们得出结论,果蝇Syncrip是卵母细胞中oskar和gurken mRNA的定位和翻译调控所需的新因子。我们建议Syncrip / SYNCRIP是与本地转录本相关的保守复合体的一部分,是它们在果蝇和哺乳动物中正确翻译调控所必需的。

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