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The zinc finger protein Zn72D and DEAD box helicase Belle interact and control maleless mRNA and protein levels

机译:锌指蛋白Zn72D和DEAD盒解旋酶Belle相互作用并控制无雄性mRNA和蛋白水平

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Background The Male Specific Lethal (MSL) complex is enriched on the single X chromosome in male Drosophila cells and functions to upregulate X-linked gene expression and equalize X-linked gene dosage with XX females. The zinc finger protein Zn72D is required for productive splicing of the maleless (mle) transcript, which encodes an essential subunit of the MSL complex. In the absence of Zn72D, MLE levels are decreased, and as a result, the MSL complex no longer localizes to the X chromosome and dosage compensation is disrupted. To understand the molecular basis of Zn72D function, we identified proteins that interact with Zn72D.Results Among several proteins that associate with Zn72D, we found the DEAD box helicase Belle (Bel). Simultaneous knockdown of Zn72D and bel restored MSL complex localization to the X chromosome and dosage compensation. MLE protein was restored to 70% of wild-type levels, although the level of productively spliced mle transcript was still four-fold lower than in wild-type cells. The increase in production of MLE protein relative to the amount of correctly spliced mle mRNA could not be attributed to an alteration in MLE stability.Conclusion These data indicate that Zn72D and Bel work together to control mle splicing and protein levels. Thus Zn72D and Bel may be factors that coordinate splicing and translational regulation.
机译:背景雄性特异性致死(MSL)复合物在雄性果蝇细胞中的单个X染色体上富集,并具有上调X连锁基因表达并与XX雌性均衡X连锁基因剂量的功能。锌指蛋白Zn72D是雄性无性(mle)转录本的生产性剪接所必需的,该转录本编码MSL复合体的重要亚基。在缺少Zn72D的情况下,MLE水平降低,结果,MSL复合物不再定位于X染色体,并且剂量补偿被破坏。为了了解Zn72D功能的分子基础,我们鉴定了与Zn72D相互作用的蛋白质。结果在与Zn72D相关的几种蛋白质中,我们发现了DEAD盒解旋酶Belle(Bel)。 Zn72D和bel的同时敲低恢复了MSL复杂的本地化X染色体和剂量补偿。 MLE蛋白恢复到野生型水平的70%,尽管有效剪接的mle转录水平仍比野生型细胞低四倍。相对于正确剪接的mle mRNA的量,MLE蛋白产量的增加不能归因于MLE稳定性的改变。结论这些数据表明Zn72D和Bel共同控制了mle剪接和蛋白水平。因此,Zn72D和Bel可能是协调剪接和翻译调控的因素。

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