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Protein synthesis rates in Drosophila associate with levels of the hsr-omega nuclear transcript

机译:果蝇中的蛋白质合成速率与hsr-ω核转录本的水平相关

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Transcripts of the Drosophila hsr-omega gene are known to interact with RNA processing factors and ribosomes and are postulated to aid in co-ordinating nuclear and cytoplasmic activities particularly in stressed cells. However, the significance of these interactions for physiological processes and in turn for whole-organism fitness remains an open question. Because hsr-omega’s cellular expression characteristics suggest it may influence protein synthesis, and because both genotypic and expression variation of hsr-omega have been associated with thermotolerance, we characterised 30 lines for variation in the rates of protein synthesis, measured in ovarian tissues, both before and after a mild heat shock, and for basal levels of the two main hsr-omega transcripts, omega-n and omega-c. As expected, the mild heat shock reduced protein synthesis rates. Large variation occurred among lines in levels of omega-n which was negatively associated with rates of basal protein synthesis—a result that supports the model for the cellular function of omega-n. Furthermore, omega-n levels were associated with hsr-omega genotype of the line parents. Little variation occurred among lines for omega-c levels and no associations were detected with protein synthesis or genotype. Since protein synthesis is a fundamental process for growth and development, we characterised the lines for several life-history traits; however, no associations with protein synthesis, omega-n or omega-c levels were detected. Our results are consistent with the idea that natural variation in hsr-omega expression influence rates of protein synthesis in this species.
机译:果蝇hsr-omega基因的转录物已知可与RNA加工因子和核糖体相互作用,并被认为有助于协调核和细胞质的活性,特别是在应激细胞中。然而,这些相互作用对于生理过程以及进而对全生物适应性的意义仍然是一个悬而未决的问题。由于hsr-omega的细胞表达特性表明它可能影响蛋白质合成,并且由于hsr-omega的基因型和表达变异均与耐热性相关,因此我们在卵巢组织中测定了30条品系的蛋白质合成速率变化,轻度热休克前后,以及两个主要的hsr-omega转录本的基本水平:omega-n和omega-c。如预期的那样,轻度的热激降低了蛋白质的合成速率。各系之间的ω-n水平存在较大差异,这与基础蛋白的合成速率呈负相关,这一结果支持了ω-n细胞功能模型的建立。此外,ω-n水平与亲本的hsr-ω基因型有关。 ω-c水平的品系之间几乎没有变化,并且未检测到与蛋白质合成或基因型的关联。由于蛋白质合成是生长和发育的基本过程,因此我们对几种生活史特征进行了分类。但是,未发现与蛋白质合成,ω-n或ω-c水平相关。我们的结果与以下想法相符:hsr-ω表达的自然变化会影响该物种的蛋白质合成速率。

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