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1101por Spadoni, Jean-Louis, Rucart, Pierre, Le Clerc, Sigrid, van Manen, Daniëlle, Coulonges, Cédric, Ulveling, Damien, Laville, Vincent, Labib, Taoufik, Taing, Lieng, Delaneau, Olivier, Montes, Matthieu, Schuitemaker, Hanneke, Noirel, Josselin, Zagury, Jean-François“…Some of those genes had previously been linked with HIV infection. Notably, ENTPD4 belongs to the same family as CD39, whose expression has already been associated with AIDS progression; while DNAJB12 is part of the HSP90 pathway, which is involved in the control of HIV latency. …”
Publicado 2015
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1102por Veras, Flávio P., Peres, Raphael S., Saraiva, André L. L., Pinto, Larissa G., Louzada-Junior, Paulo, Cunha, Thiago M., Paschoal, Jonas A. R., Cunha, Fernando Q., Alves-Filho, José C.“…Moreover, we showed that FBP-induced adenosine generation requires hydrolysis of extracellular ATP through the activity of the ectonucleosides triphosphate diphosphohydrolase-1 (ENTPD1, also known as CD39) and ecto-5′-nucleotidase (E5NT, also known as CD73). …”
Publicado 2015
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1104por Olivares, A. M., Jelcick, A. S., Reinecke, J., Leehy, B., Haider, A., Morrison, M. A., Cheng, L., Chen, D. F., DeAngelis, M. M., Haider, N. B.“…After a comprehensive analysis, we discovered multimodal regulation by miRNA, NHRs, and epigenetic factors of three miRNAs (miR-466, miR1187, and miR-710) and two genes (Ell2 and Entpd1) that are also associated with AMD. These studies provide insight into the complex, dynamic modulation of gene networks as well as their impact on human disease, and provide novel data for the development of innovative and more effective therapeutics.…”
Publicado 2017
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1105por Zhao, Xing-Cheng, Yang, Shao-Hua, Yan, Yi-Quan, Zhang, Xin, Zhang, Lin, Jiao, Bo, Jiang, Shuai, Yu, Zhi-Bin“…We have also identified 8 important genes (NME4, PNPLA7, GGT5, PTGS2, IGF1R, NT5C2, ENTPD1 and PTEN), a number of gene ontology categories and biological pathways that may be associated with military pilot hypertension. …”
Publicado 2018
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1106por Brunhara, João Arthur, Moscardi, Paulo Renato Marcelo, Mello, Marcos Figueiredo, Andrade, Hiury Silva, de Carvalho, Paulo Afonso, Cezarino, Bruno Nicolino, Dénes, Francisco Tibor, Lopes, Roberto IglesiasEnlace del recurso
Publicado 2018
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1107por Wei, Juncheng, Yuan, Yanzhi, Chen, Lu, Xu, Yuanming, Zhang, Yuehui, Wang, Yajun, Yang, Yanjie, Peek, Clara Bien, Diebold, Lauren, Yang, Yi, Gao, Beixue, Jin, Chaozhi, Melo-Cardenas, Johanna, Chandel, Navdeep S., Zhang, Donna D., Pan, Hui, Zhang, Kezhong, Wang, Jian, He, Fuchu, Fang, Deyu“…Loss of HRD1 results in elevated ENTPD5, CPT2, RMND1, and HSD17B4 protein levels and a consequent hyperactivation of both AMPK and AKT pathways. …”
Publicado 2018
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1109por Huang, Zhen-Dong, Yao, Yang-Yang, Chen, Ting-Yu, Zhao, Yi-Fan, Zhang, Chao, Niu, Yu-Ming“…A prognostic model was constructed using regression analysis based on nine survival-associated metabolic genes, among which PIP5K1B, NAGK, and HADHB significantly down-regulated, while MINPP1, PYGL, AGPAT4, ENTPD1, CA12, and CA9 significantly up-regulated. …”
Publicado 2021
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1110“…We constructed a ceRNA network which includes 4 lncRNAs (SH3BP5-AS1, MIR4435-2HG, ENTPD1-AS1, and AC007750.1), 5 miRNAs (miR-141-3p, miR-191-5p, miR-192-5p, miR-194-5p, and miR196-5p), and 52 mRNAs. …”
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1111por Mrahleh, Mairvat Al-, Matar, Suzan, Jafar, Hanan, Wehaibi, Suha, Aslam, Nazneen, Awidi, Abdalla“…Interestingly, upregulation of ENTPD1/NT5E genes express a strong evidence to switch immunostimulatory response toward immunoregulatory response. …”
Publicado 2021
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1112por Sojan, Jerry Maria, Gioacchini, Giorgia, Giorgini, Elisabetta, Orlando, Patrick, Tiano, Luca, Maradonna, Francesca, Carnevali, Oliana“…Probiotics also caused an enhanced cell cycle by regulating the expression of genes involved in Retinoic acid (rarga, cyp26b1) and Wnt/β-catenin (ctnnb1, ccnd1, axin2, sost) signaling pathways, and also modulated phosphate homeostasis by increasing the entpd5a levels. These findings provide new outlooks for the use of probiotics as a prophylactic treatment in accelerating bone regeneration and improving skeletal health in both aquaculture and biomedical fields.…”
Publicado 2022
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1114por Cai, Jiayang, Ye, Zhang, Hu, Yuanyuan, Yang, Ji’an, Wu, Liquan, Yuan, Fanen, Zhang, Li, Chen, Qianxue, Zhang, Shenqi“…We also constructed nomogram models based on the nine risk genes (CASP1, CASP8, ENTPD1, FOXP3, HSP90AA1, IFNA1, IL1R1, MYD88, and NT5E) and explored the immune infiltration correlation, gene-miRNA, and gene-TF regulatory network of the nine risk genes. …”
Publicado 2022
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1115por Ljunggren, M“…The work in this thesis has been made within the LCTPC-collaboration, an international collaboration for studying the technical aspects af a possible tracking detector at a linear collider. …”
Publicado 2011
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1116“…METHODS: In this study, we screened a human miRNA library and identified miRNAs affecting the expression of ICMs NT5E, ENTPD1, and CD274 in the human tumor cell lines SK-Mel-28 (melanoma) and MDA-MB-231 (breast cancer). …”
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1117por Mulligan, Megan K., Zhao, Wenyuan, Dickerson, Morgan, Arends, Danny, Prins, Pjotr, Cavigelli, Sonia A., Terenina, Elena, Mormede, Pierre, Lu, Lu, Jones, Byron C.“…Thirty high priority candidate genes, including Entpd2, Per3, and Fto were nominated for early and sustained alcohol intake QTLs. …”
Publicado 2018
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1118por Zhu, Hehuan, Lu, Jun, Zhao, Hu, Chen, Zhan, Cui, Qiang, Lin, Zhiwen, Wang, Xuyang, Wang, Jie, Dong, Huiyue, Wang, Shuiliang, Tan, Jianming“…RESULTS: A total of 4246 DElncRNAs, 179 DEmiRNAs, and 5758 DEmRNAs were identified, among which a subset of them (321 lncRNAs, 26 miRNAs, and 1068 mRNAs) were found to constitute a global ceRNA network in KIRC. Four lncRNAs (ENTPD3-AS1, FGD5-AS1, LIFR-AS1, and UBAC2-AS1) were revealed to be potential therapeutic targets as well as prognostic biomarkers of KIRC by our extensive functional analysis. …”
Publicado 2018
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1119por Tabassum, Rubina, Rämö, Joel T., Ripatti, Pietari, Koskela, Jukka T., Kurki, Mitja, Karjalainen, Juha, Palta, Priit, Hassan, Shabbeer, Nunez-Fontarnau, Javier, Kiiskinen, Tuomo T. J., Söderlund, Sanni, Matikainen, Niina, Gerl, Mathias J., Surma, Michal A., Klose, Christian, Stitziel, Nathan O., Laivuori, Hannele, Havulinna, Aki S., Service, Susan K., Salomaa, Veikko, Pirinen, Matti, Jauhiainen, Matti, Daly, Mark J., Freimer, Nelson B., Palotie, Aarno, Taskinen, Marja-Riitta, Simons, Kai, Ripatti, Samuli“…We identify 35 lipid-species-associated loci (P <5 ×10(−8)), 10 of which associate with CVD risk including five new loci-COL5A1, GLTPD2, SPTLC3, MBOAT7 and GALNT16 (false discovery rate<0.05). …”
Publicado 2019
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1120por Oh, Jong Jin, Shivakumar, Manu, Miller, Jason, Verma, Shefali, Lee, Hakmin, Hong, Sung Kyu, Lee, Sang Eun, Lee, Younghee, Lee, Soo Ji, Sung, Joohon, Kim, Dokyoon, Byun, Seok-Soo“…In addition to replicating previously known susceptibility genes (e.g., CDYL2, MST1R, GPER1, and PARD3B), 3 novel genes were identified (FDR q < 0.05), including the non-coding RNAs ENTPD3-AS1, LOC102724438, and protein-coding gene SPATA3. …”
Publicado 2019
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