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22121por Yang, Shang, Constantin, Oana M., Sachidanandan, Divya, Hofmann, Hannes, Kunz, Tobias C., Kozjak-Pavlovic, Vera, Oertner, Thomas G., Nagel, Georg, Kittel, Robert J., Gee, Christine E., Gao, Shiqiang“…Mutating a phenylalanine to tyrosine at residue 198 substantially decreased dark cyclase activity, which increased 7000-fold when illuminated. Whereas Drosophila larvae expressing bPAC in mechanosensory neurons show nocifensive-like behavior even in the dark, larvae expressing improved soluble (e.g., bPAC(R278A)) and membrane-anchored PACs exhibited nocifensive responses only when illuminated. …”
Publicado 2021
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22122por Bernardini, Ilaria, Poggi, Cristiana, Manzi, Sara, Bezerra-Santos, Marcos Antonio, Beugnet, Frédéric, Fourie, Josephus, Otranto, Domenico, Pombi, Marco“…Adult feeding was guaranteed by fresh apples and a liquid dietary supplement containing sodium chloride and mucin proteins, while larval development was obtained by Drosophila-like agar feeding medium. The breeding performances of two media were compared: a standard one based on cornmeal flour and an enriched medium based on chestnut flour. …”
Publicado 2022
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22123por Lund-Hansen, Katrine K., Kutzer, Megan A. M., Armitage, Sophie A. O., Gornard, Samuel, Keilani, Hamilcar, Abbott, Jessica K.“…We investigated effects of IASC and IRSC on two aspects of somatic investment, immune defence strategies and longevity, using previously established female-limited experimental evolution lines in Drosophila melanogaster. We found little evidence for any effect of either type of sexual conflict on investment in the immune defence resistance or tolerance. …”
Publicado 2022
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22124por Bierzynska, Agnieszka, Bull, Katherine, Miellet, Sara, Dean, Philip, Neal, Chris, Colby, Elizabeth, McCarthy, Hugh J., Hegde, Shivaram, Sinha, Manish D., Bugarin Diz, Carmen, Stirrups, Kathleen, Megy, Karyn, Mapeta, Rutendo, Penkett, Chris, Marsh, Sarah, Forrester, Natalie, Afzal, Maryam, Stark, Hannah, BioResource, NIHR, Williams, Maggie, Welsh, Gavin I., Koziell, Ania B., Hartley, Paul S., Saleem, Moin A.“…We report NUP93 cases in the UK and demonstrate in vivo functional effects of Nup93 depletion in a fly (Drosophila melanogaster) nephrocyte model. METHODS: Three hundred thirty-seven paediatric SRNS patients from the National cohort of patients with Nephrotic Syndrome (NephroS) were whole exome and/or whole genome sequenced. …”
Publicado 2022
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22125“…Calcium (Ca(2+)) plays a pivotal role in modulating neuronal-mediated responses to modality-specific sensory stimuli. Recent studies in Drosophila reveal class III (CIII) multidendritic (md) sensory neurons function as multimodal sensors regulating distinct behavioral responses to innocuous mechanical and nociceptive thermal stimuli. …”
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22126por Ruden, Douglas M.“…Ruden’s laboratory and titled, “Using Drosophila melanogaster as a model for genotoxic chemical mutational studies with a new program, SnpSift.” …”
Publicado 2022
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22127por Wu, Limin, Fang, Qunying, Wang, Mengli, Wang, Yurui, Zhu, Xinyi, Fang, Zhaohui, Lu, Fangting, Xu, Bo, Jin, Rentao, Han, Hui, Tong, Xianhong“…RNA-Seq results were validated by real time PCR analysis for the expression of follicle stimulating hormone receptor (FSHR), drosophila mothers against decapentaplegic protein 7(Smad7) and glutathione peroxidase 3(GPX3) genes that are known to have an important role in follicular development. …”
Publicado 2022
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22128“…Therefore, we evaluated different dissociation protocols to obtain single cells from small tissue samples of Drosophila melanogaster eye-antennal imaginal discs. …”
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22129por Sakamoto, Takuma, Sinzeki, Shun, Kakinuma, Shunsuke, Ishihara, Eri, Tabunoki, Hiroko“…We annotated P. auratus transcripts using Homo sapiens and Drosophila melanogaster genes as references; 50.5% of P. auratus transcripts were assigned to H. sapiens genes, and 54.0% of P. auratus transcripts were assigned to D. melanogaster genes. …”
Publicado 2022
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22130por Markova, Dragomira N., Ruma, Fatema B., Casola, Claudio, Mirsalehi, Ayda, Betrán, Esther“…We previously described seven transposase-derived domesticated genes from the PIF/Harbinger DNA family of TEs in Drosophila and a co-domestication. All PIF TEs known in plants and animals distinguish themselves from other DNA transposons by the presence of two genes. …”
Publicado 2022
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22131por Aboufares El Alaoui, Amina, Buhl, Edgar, Galizia, Sabrina, Hodge, James J. L., de Vivo, Luisa, Bellesi, Michele“…Finally, we demonstrated that Drosophila male mutant flies (elav > linker), in which the number of MAMs had been genetically increased, showed a reduction in the amount and consolidation of sleep without alterations in the homeostatic sleep response to SD. …”
Publicado 2023
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22132por Lauer, Richard C, Barry, Marc, Smith, Tracey L, Thomas, Andrew Maltez, Wu, Jin, Du, Ruofei, Lee, Ji-Hyun, Rao, Arpit, Dobroff, Andrey S, Arap, Marco A, Nunes, Diana N, Silva, Israel T, Dias-Neto, Emmanuel, Chen, Isan, McCance, Dennis J, Cavenee, Webster K, Pasqualini, Renata, Arap, Wadih“…BACKGROUND: We have previously shown that the long non-coding (lnc)RNA prostate cancer associated 3 (PCA3; formerly prostate cancer antigen 3) functions as a trans-dominant negative oncogene by targeting the previously unrecognized prostate cancer suppressor gene PRUNE2 (a homolog of the Drosophila prune gene), thereby forming a functional unit within a unique allelic locus in human cells. …”
Publicado 2023
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22133por Accogli, Andrea, Lu, Shenzhao, Musante, Ilaria, Scudieri, Paolo, Rosenfeld, Jill A., Severino, Mariasavina, Baldassari, Simona, Iacomino, Michele, Riva, Antonella, Balagura, Ganna, Piccolo, Gianluca, Minetti, Carlo, Roberto, Denis, Xia, Fan, Razak, Razaali, Lawrence, Emily, Hussein, Mohamed, Chang, Emmanuel Yih-Herng, Holick, Michelle, Calì, Elisa, Aliberto, Emanuela, De-Sarro, Rosalba, Gambardella, Antonio, Network, Undiagnosed Diseases, Group, SYNaPS Study, Emrick, Lisa, McCaffery, Peter J. A., Clagett-Dame, Margaret, Marcogliese, Paul C., Bellen, Hugo J., Lalani, Seema R., Zara, Federico, Striano, Pasquale, Salpietro, Vincenzo“…Lastly, we show that the NAV2 ortholog in Drosophila, sickie (sick) is widely expressed in the fly brain, and sick mutants are mostly lethal with surviving escapers showing neurobehavioral phenotypes. …”
Publicado 2022
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22134por Ervilha Pereira, Pedro, Schuermans, Nika, Meylemans, Antoon, LeBlanc, Pontus, Versluys, Lauren, Copley, Katie E., Rubien, Jack D., Altheimer, Christopher, Peetermans, Myra, Debackere, Elke, Vanakker, Olivier, Janssens, Sandra, Baets, Jonathan, Verhoeven, Kristof, Lammens, Martin, Symoens, Sofie, De Paepe, Boel, Barmada, Sami J., Shorter, James, De Bleecker, Jan L., Bogaert, Elke, Dermaut, Bart“…In vitro phase separation assays demonstrated that TDP-43(Trp385IlefsTer10) does not form liquid-like condensates and readily forms solid-like fibrils indicating increased aggregation propensity compared to wild-type TDP-43. In Drosophila TDP-43(p.Trp385IlefsTer10) behaved as a partial loss-of-function allele as it was able to rescue the TBPH (fly ortholog of TARDBP) neurodevelopmental lethal null phenotype while showing strongly reduced toxic gain-of-function properties upon overexpression. …”
Publicado 2023
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22135por Morón-Oset, Javier, Fischer, Lilly Katharina Sophie, Jauré, Nathalie, Zhang, Pingze, Jahn, Annika Julia, Supèr, Tessa, Pahl, André, Isaacs, Adrian M., Grönke, Sebastian, Partridge, Linda“…Therefore, we generated Drosophila fly lines expressing GA100, GA200 or GA400 specifically in adult neurons. …”
Publicado 2023
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22136“…We used third-instar Drosophila larvae carrying a temperature-sensitive mutation in the shibire gene coding for GTPase involved in neuronal synaptic vesicle transport. …”
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22137por Bennett, Craig L., Dastidar, Somasish, Arnold, Frederick J., McKinstry, Spencer U., Stockford, Cameron, Freibaum, Brian D., Sopher, Bryce L., Wu, Meilin, Seidner, Glen, Joiner, William, Taylor, J. Paul, West, Ryan J. H., La Spada, Albert R.“…We observed dramatic suppression of disease phenotypes in (G4C2)(58) and GR(50) Drosophila models, and detected a striking relocalization of GR(50) out of the nucleolus in flies co-expressing SETX. …”
Publicado 2023
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22138por He, Ping-an, Nie, Zuoming, Chen, Jianqing, Chen, Jian, Lv, Zhengbing, Sheng, Qing, Zhou, Songping, Gao, Xiaolian, Kong, Lingyin, Wu, Xiangfu, Jin, Yongfeng, Zhang, Yaozhou“…Functional analysis revealed that 11 miRNAs may regulate 13 B. mori orthologs of the 25 known Drosophila miRNA-targeted genes according to the functional conservation. …”
Publicado 2008
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22139por Gotoh, Hiroki, Zinna, Robert A., Warren, Ian, DeNieu, Michael, Niimi, Teruyuki, Dworkin, Ian, Emlen, Douglas J., Miura, Toru, Lavine, Laura C.“…These results indicate that the roles of CmSxl and Cmtra2 in the sex determination cascade are likely to have diverged in stag beetles when compared to Drosophila. Our results also suggest that Cmix has a conserved role in this pathway. …”
Publicado 2016
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22140por Rago, Alfredo, Gilbert, Donald G., Choi, Jeong-Hyeon, Sackton, Timothy B., Wang, Xu, Kelkar, Yogeshwar D., Werren, John H., Colbourne, John K.“…Its genome also contains 2.1-fold more duplicated genes and 1.4-fold more single copy genes than the Drosophila melanogaster genome. The Nasonia gene count is larger than those of other sequenced hymenopteran species, owing both to improvements in the genome annotation and to unique genes in the wasp lineage. …”
Publicado 2016
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