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21921por Jo, Yong Hun, Patnaik, Bharat Bhusan, Hwang, Jihun, Park, Ki Beom, Ko, Hye Jin, Kim, Chang Eun, Bae, Young Min, Jung, Woo Jin, Lee, Yong Seok, Han, Yeon Soo“…To date, most studies of the IMD pathway, and the IMD gene in particular, have been restricted to Drosophila; few similar studies have been conducted in other model insects. …”
Publicado 2019
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21922por Li, Jiong, Yang, Guanteng, Liu, Shaohua, Wang, Longjie, Liang, Zhuotao, Zhang, Hongqi“…Additionally, tri-methylation levels of H3K9 (H3K9me3) rather than other lysine sites were significantly increased in IS patients, coinciding with the upregulation of its specific enzyme, suppressor of variegation 3-9, drosophila homolog of 1 (SUV39H1). In addition, Bcl2-targeted miR-15a was downregulated in IS patients, and the level of H3K9me3 in the promoter region of the miR-15a host gene was remarkably increased in IS patients compared with the control group. …”
Publicado 2019
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21923por Schneider, Daniela I., Saarman, Norah, Onyango, Maria G., Hyseni, Chaz, Opiro, Robert, Echodu, Richard, O’Neill, Michelle, Bloch, Danielle, Vigneron, Aurélien, Johnson, T. J., Dion, Kirstin, Weiss, Brian L., Opiyo, Elizabeth, Caccone, Adalgisa, Aksoy, Serap“…It is known that the bacterium Spiroplasma is capable of protecting its Drosophila host from infection with a parasitic nematode. …”
Publicado 2019
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21924por Guo, Hui, Li, Ying, Shen, Lu, Wang, Tianyun, Jia, Xiangbin, Liu, Lijuan, Xu, Tao, Ou, Mengzhu, Hoekzema, Kendra, Wu, Huidan, Gillentine, Madelyn A., Liu, Cenying, Ni, Hailun, Peng, Pengwei, Zhao, Rongjuan, Zhang, Yu, Phornphutkul, Chanika, Stegmann, Alexander P. A., Prada, Carlos E., Hopkin, Robert J., Shieh, Joseph T., McWalter, Kirsty, Monaghan, Kristin G., van Hasselt, Peter M., van Gassen, Koen, Bai, Ting, Long, Min, Han, Lin, Quan, Yingting, Chen, Meilin, Zhang, Yaowen, Li, Kuokuo, Zhang, Qiumeng, Tan, Jieqiong, Zhu, Tengfei, Liu, Yaning, Pang, Nan, Peng, Jing, Scott, Daryl A., Lalani, Seema R., Azamian, Mahshid, Mancini, Grazia M. S., Adams, Darius J., Kvarnung, Malin, Lindstrand, Anna, Nordgren, Ann, Pevsner, Jonathan, Osei-Owusu, Ikeoluwa A., Romano, Corrado, Calabrese, Giuseppe, Galesi, Ornella, Gecz, Jozef, Haan, Eric, Ranells, Judith, Racobaldo, Melissa, Nordenskjold, Magnus, Madan-Khetarpal, Suneeta, Sebastian, Jessica, Ball, Susie, Zou, Xiaobing, Zhao, Jingping, Hu, Zhengmao, Xia, Fan, Liu, Pengfei, Rosenfeld, Jill A., de Vries, Bert B. A., Bernier, Raphael A., Xu, Zhi-Qing David, Li, Honghui, Xie, Wei, Hufnagel, Robert B., Eichler, Evan E., Xia, Kun“…Csde1 knockdown in primary mouse cortical neurons leads to an overgrowth of the neurites and abnormal dendritic spine morphology/synapse formation and impaired synaptic transmission, whereas mutant and knockdown experiments in Drosophila result in defects in synapse growth and synaptic transmission. …”
Publicado 2019
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21925“…To ascertain whether background mutations are the major contributors to this variation, we asked how much of the variation is determined by genetic variants segregating in the population, examining both the level and pattern of expression using the fruit fly, Drosophila melanogaster, as the model. RESULTS: Using selective breeding of a fourth chromosome PEV reporter line, 39C-12, we isolated two inbred lines exhibiting contrasting degrees of variegation (A1: low expression, D1: high expression). …”
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21926“…Weak selection can overpower genetic drift only in species with large effective population sizes, such as Drosophila that has relatively strong CUB, while organisms with smaller population sizes (e.g., mammals) have weak CUB. …”
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21927“…In addition, SpliceFinder performs well on the genomic sequences of Drosophila melanogaster, Mus musculus, Rattus, and Danio rerio without retraining. …”
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21928por Mátyási, Barbara, Farkas, Zsolt, Kopper, László, Sebestyén, Anna, Boissan, Mathieu, Mehta, Anil, Takács-Vellai, Krisztina“…NM23-H1 homologs are well known inhibitors of cell migration. Drosophila studies revealed that AWD, the fly counterpart of NM23-H1 is a negative regulator of cell motility by modulating endocytosis of chemotactic receptors on the surface of migrating cells in cooperation with Shibire/Dynamin; this mechanism has been recently confirmed by human studies. …”
Publicado 2020
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21929por Manivannan, Sathiya N., Darouich, Sihem, Masmoudi, Aida, Gordon, David, Zender, Gloria, Han, Zhe, Fitzgerald-Butt, Sara, White, Peter, McBride, Kim L., Kharrat, Maher, Garg, Vidu“…In vivo rescue experiments with a Drosophila MYL2-homolog (Mlc2) knockdown model indicate that neither the MYL2-fs nor the MYL2:p.Gly162Arg variant supports normal cardiac function. …”
Publicado 2020
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21930por Elmén, Lisa, Volpato, Claudia B., Kervadec, Anaïs, Pineda, Santiago, Kalvakuri, Sreehari, Alayari, Nakissa N., Foco, Luisa, Pramstaller, Peter P., Ocorr, Karen, Rossini, Alessandra, Cammarato, Anthony, Colas, Alexandre R., Hicks, Andrew A., Bodmer, Rolf“…Furthermore, the cardiac-specific knockdown of Drosophila orthologs of CCR4-NOT genes in vivo (CNOT1/Not1 and CNOT7/8/Pop2) was either lethal or resulted in dilated cardiomyopathy, reduced contractility or a propensity for arrhythmia. …”
Publicado 2020
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21931por Rufener, Lucien, Kaur, Kiranpreet, Sarr, Anouk, Aaen, Stian Mørch, Horsberg, Tor Einar“…In arthropods, functional nAChRs made of α subunits have been expressed from Drosophila genes, and hybrid receptors (sometimes also referred to as chimeric receptors) using species-specific α subunits and vertebrate β subunits have been expressed ex-vivo. …”
Publicado 2020
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21932“…Additionally, the effects of miR-29b overexpression on the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (AKT) and transforming growth factor-β (TGF-β)/Drosophila mothers against decapentaplegic protein (Smad) signaling pathways were detected via RT-qPCR assay and western blotting. …”
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21933por Zhao, Xiao-Fan“…Certain GPCRs have been shown to bind steroid hormones, for example, G protein-coupled estrogen receptor 1 (GPER1) binds estrogen in humans, and Drosophila dopamine/ecdysteroid receptor (DopEcR) binds the molting hormone 20-hydroxyecdysone (20E) in insects. …”
Publicado 2020
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21934por Mar-Aguilar, Fermín, Arreola-Triana, Alejandra, Mata-Cardona, Daniela, Gonzalez-Villasana, Vianey, Rodríguez-Padilla, Cristina, Reséndez-Pérez, Diana“…The most important contributions and promising evidence in this controversial field is the transference of milk miRNAs in exosomes and the finding that plant miRNAs in beebread regulate honeybee caste development, and cause similar changes when fed to Drosophila. MiRNAs encapsulated in exosomes ensure their stability and resistance in the harsh conditions presented in milk, bloodstream, and gastrointestinaltract to reinforce the idea of transference. …”
Publicado 2020
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21935por Zárate-Potes, Alejandra, Yang, Wentao, Pees, Barbara, Schalkowski, Rebecca, Segler, Philipp, Andresen, Bentje, Haase, Daniela, Nakad, Rania, Rosenstiel, Philip, Tetreau, Guillaume, Colletier, Jacques-Philippe, Schulenburg, Hinrich, Dierking, Katja“…In contrast, the strain-specific response is mediated by the C. elegans GATA transcription factor ELT-2, a homolog of Drosophila SERPENT and vertebrate GATA4-6, and a known master regulator of intestinal responses in the nematode. elt-2 RNAi knockdown decreased resistance to Bt679, but remarkably, increased survival on Bt247. …”
Publicado 2020
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21936por Mangleburg, Carl Grant, Wu, Timothy, Yalamanchili, Hari K., Guo, Caiwei, Hsieh, Yi-Chen, Duong, Duc M., Dammer, Eric B., De Jager, Philip L., Seyfried, Nicholas T., Liu, Zhandong, Shulman, Joshua M.“…METHODS: Paired, longitudinal RNA-sequencing and mass-spectrometry were performed in a Drosophila model of tauopathy, based on pan-neuronal expression of human wildtype Tau (Tau(WT)) or a mutant form causing frontotemporal dementia (Tau(R406W)). …”
Publicado 2020
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21937por Gao, Rui, Li, Chun-Lin, Tong, Xiao-Ling, Han, Min-Jin, Lu, Kun-Peng, Liang, Shu-Bo, Hu, Hai, Luan, Yue, Zhang, Bi-Li, Liu, Yan-Yu, Dai, Fang-Yin“…Phylogenetic analysis showed that genes in a subfamily among different animals were well clustered, and the expression pattern of EMEs is constant among Bombyx mori, Drosophila melanogaster, and Mus musculus. These are most highly expressed in brain, early embryo, and internal genitalia. …”
Publicado 2020
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21938por Kolonko, Marta, Bystranowska, Dominika, Taube, Michał, Kozak, Maciej, Bostock, Mark, Popowicz, Grzegorz, Ożyhar, Andrzej, Greb-Markiewicz, Beata“…The Drosophila melanogaster Germ cell-expressed protein (GCE) is a paralog of the juvenile hormone (JH) receptor - Methoprene tolerant protein (MET). …”
Publicado 2020
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21939“…We highlight the conservation of disorder by quantifying the extent of computationally-predicted protein disorder in the core clock of the key eukaryotic circadian model organisms Drosophila melanogaster, Neurospora crassa, and Mus musculus. …”
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21940por Carraretto, Davide, Aketarawong, Nidchaya, Di Cosimo, Alessandro, Manni, Mosè, Scolari, Francesca, Valerio, Federica, Malacrida, Anna R., Gomulski, Ludvik M., Gasperi, Giuliano“…RESULTS: Using Representational Difference Analysis, fluorescent in situ hybridisation on mitotic chromosomes and in silico genome resources, we show that the B. dorsalis Y chromosome harbours transcribed sequences of gyf, (typo-gyf) a homologue of the Drosophila melanogaster Gigyf gene, and of a non-LTR retrotransposon R1. …”
Publicado 2020
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