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Functional interplay between ribosomal protein paralogues in the eRpL22 family in Drosophila melanogaster

机译:在德普利亚美洛拉斯替洛斯氏菌属核糖体蛋白质寄生蛋止蛋白酶蛋白酶蛋白酶之间的功能相互作用

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摘要

Duplicated ribosomal protein (RP) genes in the Drosophila melanogaster eRpL22 family encode structurally-divergent and differentially-expressed rRNA-binding RPs. eRpL22 is expressed ubiquitously and eRpL22-like expression is tissue-restricted with highest levels in the adult male germline. We explored paralogue functional equivalence using the GAL4-UAS system for paralogue knockdown or overexpression and a conditional eRpL22-like knockout in a heat- shock flippase/FRT line. Ubiquitous eRpL22 knockdown with Actin-GAL4 resulted in embryonic lethality, confirming eRpL22 essentiality. eRpL22-like knockdown (60%) was insufficient to cause lethality; yet, conditional eRpL22-like knockout at one hour following egg deposition caused lethality within each developmental stage. Therefore, each paralogue is essential. Variation in timing of heat-shock-induced eRpL22-like knockout highlighted early embryogenesis as the critical period where eRpL22-like expression (not compensated for by eRpL22) is required for normal development of several organ systems, including testis development and subsequent sperm production. To determine if eRpL22-like can substitute for eRpL22, we used Actin-GAL4 for ubiquitous eRpL22 knockdown and eRpL22-like-FLAG (or FLAG-eRpL22: control) overexpression. Emergence of adults demonstrated that ubiquitous eRpL22-like-FLAG or FLAG-eRpL22 expression eliminates embryonic lethality resulting from eRpL22 depletion. Adults rescued by eRpL22-like-FLAG (but not by FLAG-eRpL22) overexpression had reduced fertility and longevity. We conclude that eRpL22 paralogue roles are not completely interchangeable and include functionally-diverse roles in development and spermatogenesis. Testis-specific paralogue knockdown revealed molecular phenotypes, including increases in eRpL22 protein and mRNA levels following eRpL22-like depletion, implicating a negative crosstalk mechanism regulating eRpL22 expression. Paralogue depletion unmasked mechanisms, yet to be defined that impact paralogue co-expression within germ cells.
机译:在果蝇中的重复核糖体蛋白(RP)基因在果蝇中的ERP122系列编码结构发散和差异表达的rRNA结合RPS。 ERPL22以普遍地表达,ERPL22样表达是组织限制,在成年雄性系中最高水平。我们使用Gal4-UAS系统探索了旁边功能等效性,用于静脉内敲低或过表达,以及在热冲击唾液酸型/ FRT线中的条件ERPL22样敲除。与肌动蛋白-AL4的抗逆液敲低导致胚胎致死,确认ERPL22基本度。 ERPL22样的敲低(60%)不足以引起致命性;然而,在蛋沉积后一小时的条件ERPL22样淘汰会导致每个发育阶段内的致死性。因此,每个副蛋止都是必不可少的。热冲击诱导的ERPL22样敲除调高的早期胚胎发生的变化作为若干器官系统的正常发育需要ERPL22样表达(未通过ERPL22补偿),包括睾丸发育和随后的精子产生。为了确定ERPL22的替代品是否可以替代ERPL22,我们使用actin-gal4用于普遍存在的ERPL22敲击和ERPL22样标志(或FLAG-ERPL22:控制)过表达。成年人的出现证明,普遍存在的ERPL22样标志或FLAG-ERPL22表达消除了由ERPL22耗竭导致的胚胎致死性。 ERPL22类似旗帜(但不是由Flag-Erpl22)过表达的成年人减少了生育和长寿。我们得出结论,ERPL22级级角色作用并不完全互换,包括在开发和精子发生中的功能多样化的作用。特定于睾丸特异性副抑制露出分子表型,包括ERPL22蛋白和mRNA水平的增加,如ERPL22样耗斗,暗示了调节ERPL22表达的负串扰机制。普拉拉威病耗尽未掩蔽机制,尚未定义影响禽细胞内的副寄生蛋白酶共表达。

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