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Refinado por: Nome da Publicação: Oncogene remover
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1
Control of glutamine metabolism by the tumor suppressor Rb
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Control of glutamine metabolism by the tumor suppressor Rb

Reynolds, M R ; Lane, A N ; Robertson, B ; Kemp, S ; Liu, Y ; Hill, B G ; Dean, D C ; Clem, B F

Oncogene, 2014-01, Vol.33 (5), p.556-566 [Periódico revisado por pares]

England: Nature Publishing Group

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2
High incidence of female reproductive tract cancers in FA-deficient HPV16-transgenic mice correlates with E7's induction of DNA damage response, an activity mediated by E7's inactivation of pocket proteins
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High incidence of female reproductive tract cancers in FA-deficient HPV16-transgenic mice correlates with E7's induction of DNA damage response, an activity mediated by E7's inactivation of pocket proteins

Park, J W ; Shin, M-K ; Lambert, P F

Oncogene, 2014-06, Vol.33 (26), p.3383-3391 [Periódico revisado por pares]

England: Nature Publishing Group

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3
MicroRNA-106b-5p boosts glioma tumorigensis by targeting multiple tumor suppressor genes
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MicroRNA-106b-5p boosts glioma tumorigensis by targeting multiple tumor suppressor genes

Liu, F ; Gong, J ; Huang, W ; Wang, Z ; Wang, M ; Yang, J ; Wu, C ; Wu, Z ; Han, B

Oncogene, 2014-10, Vol.33 (40), p.4813-4822 [Periódico revisado por pares]

England: Nature Publishing Group

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4
FOXP1 drives osteosarcoma development by repressing P21 and RB transcription downstream of P53
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FOXP1 drives osteosarcoma development by repressing P21 and RB transcription downstream of P53

Li, Hanjun ; Han, Xiuguo ; Yang, Shengbing ; Wang, Yongjie ; Dong, Yang ; Tang, Tingting

Oncogene, 2021-04, Vol.40 (15), p.2785-2802 [Periódico revisado por pares]

England: Nature Publishing Group

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5
Loss of pRB and p107 disrupts cartilage development and promotes enchondroma formation
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Loss of pRB and p107 disrupts cartilage development and promotes enchondroma formation

Landman, A S ; Danielian, P S ; Lees, J A

Oncogene, 2013-10, Vol.32 (40), p.4798-4805 [Periódico revisado por pares]

England: Nature Publishing Group

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6
RB and cell cycle progression
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RB and cell cycle progression

Giacinti, C ; Giordano, A

Oncogene, 2006-08, Vol.25 (38), p.5220-5227 [Periódico revisado por pares]

England: Nature Publishing Group

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7
Tumour kinome re-wiring governs resistance to palbociclib in oestrogen receptor positive breast cancers, highlighting new therapeutic modalities
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Tumour kinome re-wiring governs resistance to palbociclib in oestrogen receptor positive breast cancers, highlighting new therapeutic modalities

Pancholi, Sunil ; Ribas, Ricardo ; Simigdala, Nikiana ; Schuster, Eugene ; Nikitorowicz-Buniak, Joanna ; Ressa, Anna ; Gao, Qiong ; Leal, Mariana Ferreira ; Bhamra, Amandeep ; Thornhill, Allan ; Morisset, Ludivine ; Montaudon, Elodie ; Sourd, Laura ; Fitzpatrick, Martin ; Altelaar, Maarten ; Johnston, Stephen R ; Marangoni, Elisabetta ; Dowsett, Mitch ; Martin, Lesley-Ann

Oncogene, 2020-06, Vol.39 (25), p.4781-4797 [Periódico revisado por pares]

England: Nature Publishing Group

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8
The RB-IL-6 axis controls self-renewal and endocrine therapy resistance by fine-tuning mitochondrial activity
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The RB-IL-6 axis controls self-renewal and endocrine therapy resistance by fine-tuning mitochondrial activity

Kitajima, S ; Yoshida, A ; Kohno, S ; Li, F ; Suzuki, S ; Nagatani, N ; Nishimoto, Y ; Sasaki, N ; Muranaka, H ; Wan, Y ; Thai, T C ; Okahashi, N ; Matsuda, F ; Shimizu, H ; Nishiuchi, T ; Suzuki, Y ; Tominaga, K ; Gotoh, N ; Suzuki, M ; Ewen, M E ; Barbie, D A ; Hirose, O ; Tanaka, T ; Takahashi, C

Oncogene, 2017-09, Vol.36 (36), p.5145-5157 [Periódico revisado por pares]

England: Nature Publishing Group

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9
Pharmacologically targetable vulnerability in prostate cancer carrying RB1-SUCLA2 deletion
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Pharmacologically targetable vulnerability in prostate cancer carrying RB1-SUCLA2 deletion

Kohno, Susumu ; Linn, Paing ; Nagatani, Naoko ; Watanabe, Yoshihiro ; Kumar, Sharad ; Soga, Tomoyoshi ; Takahashi, Chiaki

Oncogene, 2020-08, Vol.39 (34), p.5690-5707 [Periódico revisado por pares]

England: Nature Publishing Group

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10
FoxF1 and FoxF2 transcription factors synergistically promote rhabdomyosarcoma carcinogenesis by repressing transcription of p21 Cip1 CDK inhibitor
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FoxF1 and FoxF2 transcription factors synergistically promote rhabdomyosarcoma carcinogenesis by repressing transcription of p21 Cip1 CDK inhibitor

Milewski, David ; Pradhan, Arun ; Wang, Xinjian ; Cai, Yuqi ; Le, Tien ; Turpin, Brian ; Kalinichenko, Vladimir V ; Kalin, Tanya V

Oncogene, 2017-02, Vol.36 (6), p.850 [Periódico revisado por pares]

England

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