<HashMap><database>biostudies-literature</database><scores><citationCount>0</citationCount><reanalysisCount>0</reanalysisCount><viewCount>42</viewCount><searchCount>0</searchCount></scores><additional><submitter>Mageeney CM</submitter><funding>Sigma Xi</funding><funding>Lehigh University</funding><pagination>143-163</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC6988891</full_dataset_link><repository>biostudies-literature</repository><omics_type>Unknown</omics_type><volume>12(3-4)</volume><pubmed_abstract>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.</pubmed_abstract><journal>Fly</journal><pubmed_title>Functional interplay between ribosomal protein paralogues in the eRpL22 family in Drosophila melanogaster.</pubmed_title><pmcid>PMC6988891</pmcid><funding_grant_id>G20100315152292</funding_grant_id><funding_grant_id>607277</funding_grant_id><funding_grant_id>607233</funding_grant_id><funding_grant_id>G2016100191865376</funding_grant_id><pubmed_authors>Pritchard CE</pubmed_authors><pubmed_authors>Mageeney CM</pubmed_authors><pubmed_authors>Kearse MG</pubmed_authors><pubmed_authors>Colquhoun JM</pubmed_authors><pubmed_authors>Ware VC</pubmed_authors><pubmed_authors>Gershman BW</pubmed_authors><view_count>42</view_count></additional><is_claimable>false</is_claimable><name>Functional interplay between ribosomal protein paralogues in the eRpL22 family in Drosophila melanogaster.</name><description>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.</description><dates><release>2018-01-01T00:00:00Z</release><publication>2018</publication><modification>2024-02-15T23:21:44.004Z</modification><creation>2020-05-22T10:14:32Z</creation></dates><accession>S-EPMC6988891</accession><cross_references><pubmed>30465696</pubmed><doi>10.1080/19336934.2018.1549419</doi></cross_references></HashMap>