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Refinado por: Nome da Publicação: Oncogene remover
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1
MicroRNA-193a represses c-kit expression and functions as a methylation-silenced tumor suppressor in acute myeloid leukemia
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MicroRNA-193a represses c-kit expression and functions as a methylation-silenced tumor suppressor in acute myeloid leukemia

GAO, X.-N ; LIN, J ; LI, Y.-H ; GAO, L ; WANG, X.-R ; WANG, W ; KANG, H.-Y ; YAN, G.-T ; WANG, L.-L ; YU, L

Oncogene, 2011-08, Vol.30 (31), p.3416-3428 [Periódico revisado por pares]

Basingstoke: Nature Publishing Group

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2
MicroRNA-451 functions as a tumor suppressor in human non-small cell lung cancer by targeting ras-related protein 14 (RAB14)
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MicroRNA-451 functions as a tumor suppressor in human non-small cell lung cancer by targeting ras-related protein 14 (RAB14)

WANG, R ; WANG, Z.-X ; YANG, J.-S ; PAN, X ; DE, W ; CHEN, L.-B

Oncogene, 2011-06, Vol.30 (23), p.2644-2658 [Periódico revisado por pares]

Basingstoke: Nature Publishing Group

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3
Downregulation of miR-486-5p contributes to tumor progression and metastasis by targeting protumorigenic ARHGAP5 in lung cancer
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Downregulation of miR-486-5p contributes to tumor progression and metastasis by targeting protumorigenic ARHGAP5 in lung cancer

Wang, J ; Tian, X ; Han, R ; Zhang, X ; Wang, X ; Shen, H ; Xue, L ; Liu, Y ; Yan, X ; Shen, J ; Mannoor, K ; Deepak, J ; Donahue, J M ; Stass, S A ; Xing, L ; Jiang, F

Oncogene, 2014-02, Vol.33 (9), p.1181-1189 [Periódico revisado por pares]

England: Nature Publishing Group

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4
MiR-152 and miR-185 co-contribute to ovarian cancer cells cisplatin sensitivity by targeting DNMT1 directly: a novel epigenetic therapy independent of decitabine
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MiR-152 and miR-185 co-contribute to ovarian cancer cells cisplatin sensitivity by targeting DNMT1 directly: a novel epigenetic therapy independent of decitabine

Xiang, Y ; Ma, N ; Wang, D ; Zhang, Y ; Zhou, J ; Wu, G ; Zhao, R ; Huang, H ; Wang, X ; Qiao, Y ; Li, F ; Han, D ; Wang, L ; Zhang, G ; Gao, X

Oncogene, 2014-01, Vol.33 (3), p.378-386 [Periódico revisado por pares]

England: Nature Publishing Group

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5
FOXM1 recruits nuclear Aurora kinase A to participate in a positive feedback loop essential for the self-renewal of breast cancer stem cells
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FOXM1 recruits nuclear Aurora kinase A to participate in a positive feedback loop essential for the self-renewal of breast cancer stem cells

Yang, N ; Wang, C ; Wang, Z ; Zona, S ; Lin, S-X ; Wang, X ; Yan, M ; Zheng, F-M ; Li, S-S ; Xu, B ; Bella, L ; Yong, J-S ; Lam, E W-F ; Liu, Q

Oncogene, 2017-06, Vol.36 (24), p.3428-3440 [Periódico revisado por pares]

England: Nature Publishing Group

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6
KIF26B, a novel oncogene, promotes proliferation and metastasis by activating the VEGF pathway in gastric cancer
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KIF26B, a novel oncogene, promotes proliferation and metastasis by activating the VEGF pathway in gastric cancer

Zhang, H ; Ma, R-R ; Wang, X-J ; Su, Z-X ; Chen, X ; Shi, D-B ; Guo, X-Y ; Liu, H-T ; Gao, P

Oncogene, 2017-10, Vol.36 (40), p.5609-5619 [Periódico revisado por pares]

England: Nature Publishing Group

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7
Cancer-FOXP3 directly activated CCL5 to recruit FOXP3 + Treg cells in pancreatic ductal adenocarcinoma
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Cancer-FOXP3 directly activated CCL5 to recruit FOXP3 + Treg cells in pancreatic ductal adenocarcinoma

Wang, X ; Lang, M ; Zhao, T ; Feng, X ; Zheng, C ; Huang, C ; Hao, J ; Dong, J ; Luo, L ; Li, X ; Lan, C ; Yu, W ; Yu, M ; Yang, S ; Ren, H

Oncogene, 2017-05, Vol.36 (21), p.3048-3058 [Periódico revisado por pares]

England: Nature Publishing Group

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8
Identification of MYST3 as a novel epigenetic activator of ERα frequently amplified in breast cancer
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Identification of MYST3 as a novel epigenetic activator of ERα frequently amplified in breast cancer

Yu, L ; Liang, Y ; Cao, X ; Wang, X ; Gao, H ; Lin, S-Y ; Schiff, R ; Wang, X-S ; Li, K

Oncogene, 2017-05, Vol.36 (20), p.2910-2918 [Periódico revisado por pares]

England: Nature Publishing Group

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9
Iron addiction: a novel therapeutic target in ovarian cancer
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Iron addiction: a novel therapeutic target in ovarian cancer

Basuli, D ; Tesfay, L ; Deng, Z ; Paul, B ; Yamamoto, Y ; Ning, G ; Xian, W ; McKeon, F ; Lynch, M ; Crum, C P ; Hegde, P ; Brewer, M ; Wang, X ; Miller, L D ; Dyment, N ; Torti, F M ; Torti, S V

Oncogene, 2017-07, Vol.36 (29), p.4089-4099 [Periódico revisado por pares]

England: Nature Publishing Group

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10
SIRT4 inhibits malignancy progression of NSCLCs, through mitochondrial dynamics mediated by the ERK-Drp1 pathway
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SIRT4 inhibits malignancy progression of NSCLCs, through mitochondrial dynamics mediated by the ERK-Drp1 pathway

Fu, L ; Dong, Q ; He, J ; Wang, X ; Xing, J ; Wang, E ; Qiu, X ; Li, Q

Oncogene, 2017-05, Vol.36 (19), p.2724-2736 [Periódico revisado por pares]

England: Nature Publishing Group

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