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21941por Tanabe, Shihori, Quader, Sabina, Ono, Ryuichi, Cabral, Horacio, Aoyagi, Kazuhiko, Hirose, Akihiko, Yokozaki, Hiroshi, Sasaki, Hiroki“…Our analysis uncovered 10 genes including male-specific lethal 3 homolog (Drosophila) pseudogene 1 (MSL3P1), CDC28 protein kinase regulatory subunit 1B (CKS1B), DEAD-box helicase 27 (DDX27), golgi to ER traffic protein 4 (GET4), chromosome segregation 1 like (CSE1L), translocase of outer mitochondrial membrane 34 (TOMM34), YTH N6-methyladenosine RNA binding protein 1 (YTHDF1), ribonucleic acid export 1 (RAE1), par-6 family cell polarity regulator beta (PARD6B), and MRG domain binding protein (MRGBP), which have differences in gene expression between intestinal- and diffuse-type GC. …”
Publicado 2020
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21942por Ma, Haihao, Yan, Xiumei, Yan, Lin, Zhao, Jingyan, Song, Jiping, Peng, Rong, Yang, Yongbo, Peng, Jianxin, Liu, Kaiyu“…The apoptosis signal pathways are well documented in mammals and Drosophila melanogaster. However, it remains less clear in lepidopteran insects. …”
Publicado 2021
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21943“…In this study, we identified an E3 ligase, pre-mRNA processing factor 19 (Prpf19/prp19), that modulates expanded ataxin-3 (ATXN3-polyQ), disease protein of SCA3, induced neurodegeneration in both mammalian and Drosophila disease models. We further showed that Prpf19/prp19 promotes poly-ubiquitination and degradation of mutant ATXN3-polyQ protein. …”
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21944“…The second shows how to process a 4D image stack showing the time-lapse growth of Drosophila cells in an embryo. The third example presents the quantitative analysis of insulin granules in living beta-cells, showing that such particles have two main dynamics that coexist inside the cells. …”
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21945por Xu, Liang, Li, Peixue, Hao, Xue, Lu, Yi, Liu, Mingxian, Song, Wenqian, Shan, Lin, Yu, Jiao, Ding, Hongyu, Chen, Shishuang, Yang, Ailing, Zeng, Yi Arial, Zhang, Lei, Jiang, Hai“…To answer this question, we performed a genome-wide screening for genes that affect the Hippo pathway in Drosophila and cross-referenced the hit genes with human cancer genome. …”
Publicado 2020
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21946por Catalani, Elisabetta, Bongiorni, Silvia, Taddei, Anna Rita, Mezzetti, Marta, Silvestri, Federica, Coazzoli, Marco, Zecchini, Silvia, Giovarelli, Matteo, Perrotta, Cristiana, De Palma, Clara, Clementi, Emilio, Ceci, Marcello, Prantera, Giorgio, Cervia, Davide“…The analysis of two dystrophic mutants of the fruit fly Drosophila melanogaster, the homozygous Dys(E17) and Dys(EP3397), lacking functional large-isoforms of dystrophin-like protein, revealed rhabdomere degeneration. …”
Publicado 2020
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21947por Jia, Zhihao, Jiang, Shuai, Wang, Mengqiang, Wang, Xiudan, Liu, Yu, Lv, Zhao, Song, Xiaorui, Li, Yiqun, Wang, Lingling, Song, Linsheng“…DM9 refers to an uncharacterized protein domain that is originally discovered in Drosophila melanogaster. Two proteins with DM9 repeats have been recently identified from Pacific oyster Crassostrea gigas as mannose-specific binding pattern-recognition receptors (PRRs). …”
Publicado 2021
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21948por Basumatary, Jigmi, Ara, Tarannum, Mukherjee, Amartya, Dutta, Debanjan, Nongthomba, Upendra, Mondal, Partha Pratim“…To illustrate the advantages of our approach, we have noninvasively imaged the Drosophila larvae and Zebrafish embryo. Dynamic studies of multiple organs (muscle and yolk-sac) in Zebrafish for a prolonged duration (5 days) were carried out to understand muscle structuring (Dystrophin, microfibers), primitive Macrophages (in yolk-sac) and inter-dependent lipid and protein-based metabolism. …”
Publicado 2021
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21949Natural abundance isotope ratios to differentiate sources of carbon used during tumor growth in vivo“…IRMS measurements were found to be sufficiently sensitive to measure organs from individual Drosophila melanogaster larvae, giving robust measurements down to 2.5 μg per sample. …”
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21950“…METHODS: Using the Drosophila nephrocyte as a genetic screen platform, we screened most genes involved in endocytosis and cell trafficking, and identified the key components of the cell trafficking pathway required for SD protein endocytosis and recycling. …”
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21951por Diaz, Fernando, Allan, Carson W., Markow, Therese Ann, Bono, Jeremy M., Matzkin, Luciano M.“…Here we addressed these questions in the context of con- vs heterospecific matings between Drosophila mojavensis and its sister species, D. arizonae. …”
Publicado 2021
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21952por Erokhin, Maksim, Gorbenko, Fedor, Lomaev, Dmitry, Mazina, Marina Yu, Mikhailova, Anna, Garaev, Azat K., Parshikov, Aleksander, Vorobyeva, Nadezhda E., Georgiev, Pavel, Schedl, Paul, Chetverina, Darya“…RESULTS: Using an attP system in Drosophila, we find that the so-called neutral chromatin environments vary substantially in their ability to support the silencing activity of the well-characterized bxdPRE. …”
Publicado 2021
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21953“…The highly costly and over-replicating H. defensa strain H85 was associated with strongly reduced aphid expression of hemocytin, a marker of hemocytes in Drosophila. The closely related strain H15 was associated with downregulation of ubiquitin-related modifier 1, which is related to nutrient-sensing and oxidative stress in other organisms. …”
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21954“…BACKGROUND: hes genes are chordate homologs of Drosophila genes, hairy and enhancer of split, which encode a basic helix-loop-helix (bHLH) transcriptional repressor with a WRPW motif. …”
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21955“…Both in vivo and in vitro experiments led to the conclusion that Pue modulated Sirt1 activation and repressed transforming growth factor-β1 (TGF-β1) protein expression and drosophila mothers against decapentaplegic homolog3 (Smad3) phosphorylation in order to exert neuroprotection. …”
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21956por Tan, Shengjiang, Kermasson, Laëtitia, Hilcenko, Christine, Kargas, Vasileios, Traynor, David, Boukerrou, Ahmed Z., Escudero-Urquijo, Norberto, Faille, Alexandre, Bertrand, Alexis, Rossmann, Maxim, Goyenechea, Beatriz, Jin, Li, Moreil, Jonathan, Alibeu, Olivier, Beaupain, Blandine, Bôle-Feysot, Christine, Fumagalli, Stefano, Kaltenbach, Sophie, Martignoles, Jean-Alain, Masson, Cécile, Nitschké, Patrick, Parisot, Mélanie, Pouliet, Aurore, Radford-Weiss, Isabelle, Tores, Frédéric, de Villartay, Jean-Pierre, Zarhrate, Mohammed, Koh, Ai Ling, Phua, Kong Boo, Reversade, Bruno, Bond, Peter J., Bellanné-Chantelot, Christine, Callebaut, Isabelle, Delhommeau, François, Donadieu, Jean, Warren, Alan J., Revy, Patrick“…SDS-related somatic EIF6 missense mutations that reduce eIF6 dosage or eIF6 binding to the 60S subunit suppress the defects in ribosome assembly and protein synthesis across multiple SBDS-deficient species including yeast, Dictyostelium and Drosophila. Our data suggest that SGR is a universal phenomenon that may influence the clinical evolution of diverse Mendelian disorders and support eIF6 suppressor mimics as a therapeutic strategy in SDS.…”
Publicado 2021
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21957por Marot-Lassauzaie, Valérie, Goldberg, Tatyana, Armenteros, Jose Juan Almagro, Nielsen, Henrik, Rost, Burkhard“…This work compared the location spectra for ten eukaryotes: Homo sapiens (human), Gorilla gorilla (gorilla), Pan troglodytes (chimpanzee), Mus musculus (mouse), Rattus norvegicus (rat), Drosophila melanogaster (fruit/vinegar fly), Anopheles gambiae (African malaria mosquito), Caenorhabitis elegans (nematode), Saccharomyces cerevisiae (baker’s yeast), and Schizosaccharomyces pombe (fission yeast). …”
Publicado 2021
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21958por Chang, Kai, Kang, Ping, Liu, Ying, Huang, Kerui, Miao, Ting, Sagona, Antonia P., Nezis, Ioannis P., Bodmer, Rolf, Ocorr, Karen, Bai, Hua“…Here we identified TGFB-INHB/activin signaling as a novel upstream regulator of MTORC2 to control autophagy and cardiac health during aging. Using Drosophila heart as a model system, we show that cardiac-specific knockdown of TGFB-INHB/activin-like protein daw induces autophagy and alleviates age-related heart dysfunction, including cardiac arrhythmias and bradycardia. …”
Publicado 2019
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21959“…Using our previously established Drosophila model of neuronal necrosis, we found that inhibition of small RNA transcription, blocking RNA transport from nucleus to cytosol, or knocking down Ago1/2 to suppress the RNA interference effect, all rescued the fly death, suggesting transcription and processing of small RNAs contribute to neuronal necrosis. …”
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21960por Vera-Ponce de León, Arturo, Jahnes, Benjamin C., Otero-Bravo, Alejandro, Sabree, Zakee L.“…These results are in contrast with specialist-feeding model insects (e.g., Drosophila), where introduction of a single endemic bacterial species to germfree condition-reared specimens recovered normal host phenotypes. …”
Publicado 2021
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