首页> 外文期刊>Molecular genetics and genomics: MGG >Transcripts from the Drosophila heat-shock gene hsr-omega influence rates of protein synthesis but hardly affect resistance to heat knockdown
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Transcripts from the Drosophila heat-shock gene hsr-omega influence rates of protein synthesis but hardly affect resistance to heat knockdown

机译:果蝇热休克基因hsr-omega的转录产物影响蛋白质合成的速率,但几乎不影响对热击倒的抗性。

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摘要

While hundreds of genes have recently been implicated in an organism's response to thermal stress, our insight into the cellular and physiological mechanisms affected by these genes has advanced to a lesser extent. We focus on an enigmatic Drosophila heat stress RNA gene, hsr-omega, which encodes two RNA transcripts that are constitutively expressed in almost all developing and adult tissues, omega-n in the nucleus and omega-c in the cytoplasm; both being readily induced to high levels by mild heat stress. We derived three hsr-omega mutant lines via imprecise P-element excision and characterised them for changes in expression, in both the presence and absence of heat stress. Viability estimates indicate that a low level of omega-n is required for normal development. Consistent with the model of omega-n as a negative regulator of intron-processed mRNA levels the mutants displayed a 1.5-fold increase in rates of protein synthesis measured in ovarian tissue in the absence of heat stress, a result suggesting that an important function of hsr-omega is the modulation of general protein synthesis. The mutants had little effect on two measures commonly used to assess heat tolerance, heat-knockdown time and heat hardening ability, suggesting that more subtle heat-related fitness components need to be examined for effects of these mutations.
机译:尽管最近有数百个基因与生物体对热应激的反应有关,但我们对受这些基因影响的细胞和生理机制的了解程度有所降低。我们关注一个神秘的果蝇热应激RNA基因hsr-omega,该基因编码在几乎所有发育中和成年组织中组成性表达的两个RNA转录本,细胞核中的ω-n和细胞质中的ω-c。两者都容易被轻度的热应激诱导至高水平。我们通过不精确的P元素切除获得了3个hsr-omega突变株,并在存在和不存在热应激的情况下对其表达变化进行了表征。生存力估计表明正常发育需要低水平的ω-n。与omega-n作为内含子加工的mRNA水平的负调节剂模型相一致,在没有热应激的情况下,突变体在卵巢组织中测得的蛋白质合成速率增加了1.5倍,结果表明该功能的重要作用是hsr-ω是一般蛋白质合成的调节。这些突变体对通常用于评估耐热性,热击倒时间和热硬化能力的两种方法几乎没有影响,表明这些突变的影响需要检查更细微的热相关适应性成分。

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