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1081por Ramírez-Orozco, Ricardo E., García-Ruiz, Ricardo, Morales, Paula, Villalón, Carlos M., Villafán-Bernal, J. Rafael, Marichal-Cancino, Bruno A.Enlace del recurso
Publicado 2019
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1082por Shi, Hongyun, Li, Chun, Feng, Wei, Yue, Jianjun, Song, Jingfang, Peng, Aizhi, Wang, HuaEnlace del recurso
Publicado 2020
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1083
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1084por Harshe, Rasika P., Xie, Anyan, Vuerich, Marta, Frank, Luiza Abrahão, Gromova, Barbora, Zhang, Haohai, Robles, Rene’ J., Mukherjee, Samiran, Csizmadia, Eva, Kokkotou, Efi, Cheifetz, Adam S., Moss, Alan C., Kota, Satya K., Robson, Simon C., Longhi, Maria Serena“…Here we report a mechanism of CD39 regulation that relies on the presence of an endogenous antisense RNA, transcribed from the 3′-end of the human CD39/ENTPD1 gene. CD39-specific antisense is increased in Treg and Th17-cells of Crohn’s disease patients over controls. …”
Publicado 2020
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1085por Scott, Andrew C., Dündar, Friederike, Zumbo, Paul, Chandran, Smita S., Klebanoff, Christopher A., Shakiba, Mojdeh, Trivedi, Prerak, Menocal, Laura, Appleby, Heather, Camara, Steven, Zamarin, Dmitriy, Walther, tyler, Snyder, Alexandra, Femia, Matthew R., Comen, Elizabeth A., Wen, Hannah Y., Hellmann, Matthew D., Anandasabapathy, Niroshana, Liu, Yong, Altorki, Nasser K., Lauer, Peter, Levy, Olivier, Glickman, Michael S., Kaye, Jonathan, Betel, Doron, Philip, Mary, Schietinger, Andrea“…Conversely, deletion of Tox in TST cells in tumours abrogated the exhaustion program: Tox-deleted TST cells did not upregulate genes for inhibitory receptors (such as Pdcd1, Entpd1, Havcr2, Cd244 and Tigit), the chromatin of which remained largely inaccessible, and retained high expression of transcription factors such as TCF-1. …”
Publicado 2019
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1086“…Analysis of CRC genomic data from the TCGA, indicated an excess of chromothriptic clusters among CYT-low colon adenocarcinomas, affecting known cancer drivers (APC, KRAS, BRAF, TP53 and FBXW7), immune checkpoints (CD274, PDCD1LG2, IDO1/2 and LAG3) and immune-related genes (ENTPD1, PRF1, NKG7, FAS, GZMA/B/H/K and CD73). CYT-high tumors were characterized by hypermutation, enrichment in APOBEC-associated mutations and kataegis events, as well as APOBEC activation. …”
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1087por Rychkov, Dmitry, Neely, Jessica, Oskotsky, Tomiko, Yu, Steven, Perlmutter, Noah, Nititham, Joanne, Carvidi, Alexander, Krueger, Melissa, Gross, Andrew, Criswell, Lindsey A., Ashouri, Judith F., Sirota, Marina“…We developed a robust machine learning feature selection pipeline with validation on five independent datasets culminating in 13 genes: TNFAIP6, S100A8, TNFSF10, DRAM1, LY96, QPCT, KYNU, ENTPD1, CLIC1, ATP6V0E1, HSP90AB1, NCL and CIRBP which define the RA score and demonstrate its clinical utility: the score tracks the disease activity DAS28 (p = 7e-9), distinguishes osteoarthritis (OA) from RA (OR 0.57, p = 8e-10) and polyJIA from healthy controls (OR 1.15, p = 2e-4) and monitors treatment effect in RA (p = 2e-4). …”
Publicado 2021
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1088por Seo, Dae Yun, Bae, Jun Hyun, Zhang, Didi, Song, Wook, Kwak, Hyo-Bum, Heo, Jun-Won, Jung, Su-Jeen, Yun, Hyeong Rok, Kim, Tae Nyun, Lee, Sang Ho, Kim, Amy Hyein, Jeong, Dae Hoon, Kim, Hyoung Kyu, Han, JinEnlace del recurso
Publicado 2021
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1089por Ionescu, Mihaela Ileana“…An extensive investigation of some enzymes described to be upregulated or downregulated in PD was made – adenylate kinase (AK), adenine phosphoribosyltransferase (APRT), ectonucleoside triphosphate diphosphohydrolase 1 (ENTPD1), nucleoside-diphosphate kinase 3 (NDK3), purine nucleoside phosphorylase 1 (PNP1), and ecto-5’-nucleotidase (NT5E). …”
Publicado 2020
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1090“…RESULTS: Nine metabolism-related genes were identified: ADCY7, ALDH3B1, CHIA, CYP2C18, ENTPD6, GGCT, HPRT1, PLA2G1B, and PTGIS. A clinical prediction model for LUSC based on metabolism-related genes was constructed. …”
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1091por Yi, Lin, Qiang, Ji, Yichen, Peng, Chunna, Yu, Yi, Zheng, Xun, Kang, Jianwei, Zheng, Rixing, Bai, Wenmao, Yan, Xiaomin, Wang, Parker, Li, Wenbin, Li“…RESULTS: A total of 468 DEGs were identified, and a signature consisting of 5 genes (CLIC5, ENTPD8, PACSIN3, HGD, and GNG7) was selected to calculate the risk-score. …”
Publicado 2022
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1092por Yang, Jiahui, Chen, Yicun, Gao, Ming, Wu, Liwen, Xiong, Shifa, Wang, Siqi, Gao, Jing, Zhao, Yunxiao, Wang, Yangdong“…LcbHLH78 and the terpene synthase LcTPS42 showed comparable expression patterns in various tissues and fruit development stages of L. cubeba. …”
Publicado 2022
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1093por Liu, Zhenni, Wu, Baoming, Liu, Xueqi, Wu, Xue, Du, Jiyu, Xia, Guoqing, Cai, Junnan, Zhu, Hong, Sheng, Xiaodong, Zhang, Mengda, Xu, Junrui, Xu, Tao, Lv, Xiongwen“…In this study, we demonstrated that CD73/NT5E had a more significant regulatory effect on the activation, proliferation, and apoptosis of HSCs compared with that of CD39/ENTPD1. We examined the expression of CD73/NT5E in the normal and fibrotic human livers. …”
Publicado 2023
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1094por Tremmel, Daniel M., Mikat, Anna E., Gupta, Sakar, Mitchell, Samantha A., Curran, Andrew M., Menadue, Jenna A., Odorico, Jon S., Sackett, Sara Dutton“…We utilized our tissue bank and SC-islet resources to test an array of other candidate maturation-associated genes, and identified CHGB, G6PC2, FAM159B, GLUT1, IAPP and ENTPD3 as markers with expression patterns that correlate developmentally with the onset of functional maturation in human beta cells. …”
Publicado 2023
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1095“…It was also found that the expression levels of hsa-miR-1291 and Retinoid acid receptor-related orphan receptor α (RORA) in the myocardial infarction group were noticeably lower than those in the normal group, whereas the expression levels of ENTPD1, QSOX1, and TIMP2 in the myocardial infarction group were noticeably higher than those in the normal group. …”
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1096por Warren, Michael C., Matissek, Stephan, Rausch, Matthew, Panduro, Marisella, Hall, Richard J., Dulak, Austin, Brennan, David, Yekkirala, Sonia Das, Koseoglu, Secil, Masia, Ricard, Yang, Yu, Reddy, Navamallika, Prenovitz, Robert, Strand, Jamie, Zaidi, Tauqueer, Devereaux, Erik, Foissac, Célia Jacoberger, Stagg, John, Lee, Benjamin H., Holland, Pamela, Palombella, Vito J., Lake, Andrew C.“…CD39 (ENTPD1) is a key enzyme responsible for degradation of extracellular ATP and is upregulated in the tumor microenvironment (TME). …”
Publicado 2023
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1097por Chari, Raj, Lonergan, Kim M, Ng, Raymond T, MacAulay, Calum, Lam, Wan L, Lam, Stephen“…Increased expression of TFF3, CABYR, and ENTPD8 were found to be reversible upon smoking cessation. …”
Publicado 2007
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1098por Apschner, Alexander, Huitema, Leonie F. A., Ponsioen, Bas, Peterson-Maduro, Josi, Schulte-Merker, Stefan“…Treatment with the bisphosphonate etidronate rescues aspects of the dgf phenotype, and we detected deregulated expression of genes that are involved in phosphate homeostasis and mineralization, such as fgf23, npt2a, entpd5 and spp1 (also known as osteopontin). Employing a UAS-GalFF approach, we show that forced expression of enpp1 in blood vessels or the floorplate of mutant embryos is sufficient to rescue the notochord mineralization phenotype. …”
Publicado 2014
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1099por Zhong, Jingmei, Wu, Shaoyuan, Zhao, Ying, Chen, Hui, Zhao, Naiwei, Zheng, Kunwen, Zhao, Zhong, Chen, Wenli, Wang, Bo, Wu, KunhuaEnlace del recurso
Publicado 2013
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1100por Li, Wei-Cai, Wu, Jian-Yang, Zhang, Hong-Na, Shi, Sheng-You, Liu, Li-Qin, Shu, Bo, Liang, Qing-Zhi, Xie, Jiang-Hui, Wei, Yong-Zan“…Furthermore, four genes (LcAQP, 1; LcPIP, 1; LcNIP, 1; LcSIP, 1) involved in water transport, five genes (LcKS, 2; LcGA2ox, 2; LcGID1, 1) involved in GA metabolism, 21 genes (LcCYP707A, 2; LcGT, 9; Lcβ-Glu, 6; LcPP2C, 2; LcABI1, 1; LcABI5, 1) involved in ABA metabolism, 13 genes (LcTPC, 1; Ca(2+)/H(+) exchanger, 3; Ca(2+)-ATPase, 4; LcCDPK, 2; LcCBL, 3) involved in Ca transport and 24 genes (LcPG, 5; LcEG, 1; LcPE, 3; LcEXP, 5; Lcβ-Gal, 9; LcXET, 1) involved in cell wall metabolism were identified as genes that are differentially expressed in cracked fruits compared to non-cracked fruits. …”
Publicado 2014
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