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Phylogenetic Analyses and Characterization of RNase X25 from Drosophila melanogaster Suggest a Conserved Housekeeping Role and Additional Functions for RNase T2 Enzymes in Protostomes

机译:系统发育分析和表征从果蝇的RNase X25建议保守的管家作用和原酶中RNase T2酶的其他功能。

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摘要

Ribonucleases belonging to the RNase T2 family are enzymes associated with the secretory pathway that are almost absolutely conserved in all eukaryotes. Studies in plants and vertebrates suggest they have an important housekeeping function in rRNA recycling. However, little is known about this family of enzymes in protostomes. We characterized RNase X25, the only RNase T2 enzyme in Drosophila melanogaster. We found that RNase X25 is the major contributor of ribonuclease activity in flies as detected by in gel assays, and has an acidic pH preference. Gene expression analyses showed that the RNase X25 transcript is present in all adult tissues and developmental stages. RNase X25 expression is elevated in response to nutritional stresses; consistent with the hypothesis that this enzyme has a housekeeping role in recycling RNA. A correlation between induction of RNase X25 expression and autophagy was observed. Moreover, induction of gene expression was triggered by oxidative stress suggesting that RNase X25 may have additional roles in stress responses. Phylogenetic analyses of this family in protostomes showed that RNase T2 genes have undergone duplication events followed by divergence in several phyla, including the loss of catalytic residues, and suggest that RNase T2 proteins have acquired novel functions. Among those, it is likely that a role in host immunosuppression evolved independently in several groups, including parasitic Platyhelminthes and parasitoid wasps. The presence of only one RNase T2 gene in the D. melanogaster genome, without any other evident secretory RNase activity detected, makes this organism an ideal system to study the cellular functions of RNase T2 proteins associated with RNA recycling and maintenance of cellular homeostasis. On the other hand, the discovery of gene duplications in several protostome genomes also presents interesting new avenues to study additional biological functions of this ancient family of proteins.
机译:属于RNase T2家族的核糖核酸酶是与分泌途径相关的酶,在所有真核生物中几乎都是绝对保守的。植物和脊椎动物的研究表明它们在rRNA回收中具有重要的管家功能。然而,关于这种蛋白质在酶原中的家族知之甚少。我们表征了果蝇果蝇中唯一的RNase T2酶RNase X25。我们发现,RNase X25是果蝇中核糖核酸酶活性的主要贡献者(通过凝胶测定法检测到),并且具有酸性pH偏爱。基因表达分析表明,RNase X25转录本存在于所有成人组织和发育阶段。响应营养压力,RNase X25表达增加;与这种酶在回收RNA中具有管家作用的假设相一致。观察到RNase X25表达的诱导与自噬之间的相关性。此外,氧化应激触发了基因表达的诱导,提示RNase X25在应激反应中可能还有其他作用。该家族的系统发育分析表明,RNase T2基因经历了重复事件,随后在几个门中发散,包括催化残基的丢失,表明RNase T2蛋白获得了新的功能。其中,宿主免疫抑制的作用可能在包括寄生侧柏和寄生类黄蜂在内的多个组中独立发展。 D. melanogaster基因组中仅存在一个RNase T2基因,而没有检测到任何其他明显的分泌性RNase活性,使该生物体成为研究RNase T2蛋白与RNA回收和维持细胞稳态有关的细胞功能的理想系统。另一方面,在多个原蛋白质组基因组中发现基因重复也为研究这个古老蛋白质家族的其他生物学功能提供了有趣的新途径。

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