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A CCHC metal-binding domain in Nanos is essential for translational regulation.

机译:Nanos中的CCHC金属结合结构域对于翻译调控至关重要。

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摘要

The Drosophila Nanos protein is a localized repressor of hunchback mRNA translation in the early embryo, and is required for the establishment of the anterior-posterior body axis. Analysis of nanos mutants reveals that a small, evolutionarily conserved, C-terminal region is essential for Nanos function in vivo, while no other single portion of the Nanos protein is absolutely required. Within the C-terminal region are two unusual Cys-Cys-His-Cys (CCHC) motifs that are potential zinc-binding sites. Using absorption spectroscopy and NMR we demonstrate that the CCHC motifs each bind one equivalent of zinc with high affinity. nanos mutations disrupting metal binding at either of these two sites in vitro abolish Nanos translational repression activity in vivo. We show that full-length and C-terminal Nanos proteins bind to RNA in vitro with high affinity, but with little sequence specificity. Mutations affecting the hunchback mRNA target sites for Nanos-dependent translational repression were found to disrupt translational repression in vivo, but had little effect on Nanos RNA binding in vitro. Thus, the Nanos zinc domain does not specifically recognize target hunchback RNA sequences, but might interact with RNA in the context of a larger ribonucleoprotein complex.
机译:果蝇纳米蛋白是早期胚胎中驼背mRNA翻译的局部阻遏物,并且是建立前后身体轴所必需的。对nanos突变体的分析表明,一个小的,进化保守的C端区域对于Nanos在体内的功能至关重要,而绝对不需要Nanos蛋白的其他任何单个部分。在C端区域内是两个不常见的Cys-Cys-His-Cys(CCHC)基序,它们是潜在的锌结合位点。使用吸收光谱法和NMR,我们证明了CCHC基序各自以高亲和力结合一当量的锌。纳米突变在体外破坏了这两个位点的金属结合,从而废除了体内的纳米翻译抑制活性。我们显示全长和C端Nanos蛋白以高亲和力结合体外RNA,但几乎没有序列特异性。发现突变影响驼背mRNA靶位点的Nanos依赖性翻译抑制在体内破坏翻译抑制,但在体外对Nanos RNA结合的影响很小。因此,Nanos锌结构域不能特异性识别目标驼背RNA序列,但可能在较大的核糖核蛋白复合物的背景下与RNA相互作用。

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