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Characterization of the small heat shock protein Hsp27 gene in Chironomus riparius (Diptera) and its expression profile in response to temperature changes and xenobiotic exposures

机译:滨藜(Diptera)小热激蛋白Hsp27基因的表征及其对温度变化和异源生物暴露的响应

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Small heat shock proteins constitute the most diverse and least conserved group within the large family of heat shock proteins, which play a crucial role in cell response to environmental insults. Chironomus riparius larvae are widely used in environmental research for testing pollutant toxicity in sediments and freshwater environments. Different genes, such as Hsp70, Hsc70, Hsp90, and Hsp40, have been identified in this species as sensitive biomarkers for xenobiotics, but small Hsps genes remain largely unknown. In this study, the Hsp27 has been characterized in C. riparius and its transcriptional response evaluated under several environmental stimuli. The Hsp27 gene was mapped by FISH on polytene chromosomes at region I-C4 and was found to encode a 195 aa protein, which contains an α-crystallin domain bounded by three conserved regions. This protein shows homology with Drosophila melanogaster HSP27, Ceratitis capitata HSP27, and Sarcophaga crassipalpis HSP25. Real-time reverse transcriptase–polymerase chain reaction analysis showed that heat shock (35?°C) and cadmium dramatically upregulate this gene. Moreover, exposures to triclosan and bisphenol A were able to significantly increase mRNA levels. However, neither nonylphenol nor tributyltin altered Hsp27 gene expression. The transcriptional activity of Hsp27 gene was modulated during cold stress. Interestingly, cold shock (4?°C) significantly reduced Hsp27 transcripts, but this gene was significantly overexpressed during the recovery time at the normal growing temperature. These results show that the Hsp27 gene is sensitive to different environmental stimuli, including endocrine-disrupting pollutants, suggesting its potential as a suitable biomarker for ecotoxicological studies in aquatic systems.
机译:小型热激蛋白构成热激蛋白大家族中种类最多,最保守的基团,它们在细胞对环境侵害的反应中起着至关重要的作用。 Chironomus riparius幼虫广泛用于环境研究,以测试沉积物和淡水环境中的污染物毒性。已在该物种中鉴定出不同的基因,例如Hsp70,Hsc70,Hsp90和Hsp40,作为异种生物的敏感生物标志物,但小的Hsps基因在很大程度上仍然未知。在这项研究中,Hsp27已在河豚假单胞菌中鉴定过,并在几种环境刺激下评估了其转录反应。通过FISH将Hsp27基因定位在I-C4区域的多态染色体上,发现该基因编码195个氨基酸的蛋白质,该蛋白质包含一个由三个保守区域组成的α-晶状蛋白结构域。该蛋白与黑腹果蝇HSP27,人头角膜炎HSP27和Sarcophaga crassipalpis HSP25具有同源性。实时逆转录酶-聚合酶链反应分析表明,热休克(35℃)和镉显着上调了该基因。此外,暴露于三氯生和双酚A能够显着增加mRNA水平。但是,壬基酚和三丁基锡都不能改变Hsp27基因的表达。 Hsp27基因的转录活性在寒冷胁迫下被调节。有趣的是,冷休克(4℃)显着降低了Hsp27转录本,但是在正常生长温度下的恢复时间内该基因显着过表达。这些结果表明,Hsp27基因对不同的环境刺激敏感,包括破坏内分泌的污染物,表明其作为水生系统生态毒理学研究的合适生物标志物的潜力。

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