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Perspectives of Reprogramming Breast Cancer Metabolism

Wang, Yi-Ping; Lei, Qun-Ying

Advances in experimental medicine and biology. Volume 1026(2017); 2017; 217-232 -- Plenum Press

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Regulatory role of cancer microenvironment in cancer metabolism

Yin, Miao et al.

Shengwu huaxue yu shengwu wuli jinzhan -- Kexue Chuban She -- Volume: 44 Issue: 8; (pages 649-659) -- 2017

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Impact of acetylation on tumor metabolism

Zhao, Di et al.

Molecular & cellular oncology. Volume 1:Number 3(2014); 20140915; - -- Taylor & Francis

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TAZQ233del Hijacks Hippo pathway to promote mesenchymal-epithelial transition in pancreatic adenocarcinoma cells

Yao, Chuan-Bo et al.

Biochemical and biophysical research communications. Volume 503:Number 4 (2018, September 18th); pp 2240-2247 -- Elsevier Science

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Acetylation Control of Cancer Cell Metabolism

Lin, Ruiting et al.

Current pharmaceutical design. Volume 20:Issue 15 (2014); pp 2627-2633 -- Bentham Science Publishers

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PARD3 induces TAZ activation and cell growth by promoting LATS1 and PP1 interaction

Lv, Xian‐Bo et al.

EMBO reports. Volume 16:Number 8 (2015, August); pp 975-985 -- WILEY-VCH Verlag GmbH & Co. KGaA

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Arginine methylation of SIRT7 couples glucose sensing with mitochondria biogenesis

Yan, Wei‐Wei et al.

EMBO reports. Volume 19:Number 12 (2018); pp n/a-n/a -- WILEY-VCH Verlag GmbH & Co. KGaA

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Cullin 3 targets methionine adenosyltransferase IIα for ubiquitylation‐mediated degradation and regulates colorectal cancer cell proliferation

Wang, Jian et al.

FEBS journal. Volume 283:Number 13 (2016); pp 2390-2402 -- [Wiley-Blackwell]

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Acetylation targets HSD17B4 for degradation via the CMA pathway in response to estrone

Zhang, Ye et al.

Autophagy. Volume 13:Issue 3 (2017); pp 538-553 -- Taylor & Francis

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Acetylation targets HSD17B4 for degradation via the CMA pathway in response to estrone

Zhang, Ye et al.

Autophagy. Volume 13:Issue 3 (2017, March); pp 538-553 -- Taylor & Francis

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