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1
Prognostic impact of expression and methylation status of DENN/MADD domain-containing protein 2D in gastric cancer.胃癌中 DENN/MADD 结构域蛋白 2D 的表达和甲基化状态对预后的影响。
Gastric Cancer. 2015 Apr;18(2):288-96. doi: 10.1007/s10120-014-0372-0. Epub 2014 Apr 3.
2
Base preferences in non-templated nucleotide incorporation by MMLV-derived reverse transcriptases.MMLV 衍生逆转录酶在非模板核苷酸掺入中的基本偏好。
PLoS One. 2013 Dec 31;8(12):e85270. doi: 10.1371/journal.pone.0085270. eCollection 2013.
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Tracking the clonal origin of lethal prostate cancer.追踪致命性前列腺癌的克隆起源。
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Metabolic targets for cancer therapy.癌症治疗的代谢靶点。
Nat Rev Drug Discov. 2013 Nov;12(11):829-46. doi: 10.1038/nrd4145. Epub 2013 Oct 11.
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P-glycoprotein ABCB1: a major player in drug handling by mammals.P-糖蛋白 ABCB1:哺乳动物药物处理的主要参与者。
J Clin Invest. 2013 Oct;123(10):4131-3. doi: 10.1172/JCI70430. Epub 2013 Oct 1.
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Disorders of fatty acid oxidation.脂肪酸氧化紊乱
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7
MCJ/DnaJC15, an endogenous mitochondrial repressor of the respiratory chain that controls metabolic alterations.MCJ/DnaJC15,一种内源性线粒体呼吸链抑制剂,可控制代谢改变。
Mol Cell Biol. 2013 Jun;33(11):2302-14. doi: 10.1128/MCB.00189-13. Epub 2013 Mar 25.
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Mechanisms and insights into drug resistance in cancer.癌症耐药机制及研究进展
Front Pharmacol. 2013 Mar 14;4:28. doi: 10.3389/fphar.2013.00028. eCollection 2013.
9
Substrate specificity of human carnitine acetyltransferase: Implications for fatty acid and branched-chain amino acid metabolism.人肉碱乙酰转移酶的底物特异性:对脂肪酸和支链氨基酸代谢的影响。
Biochim Biophys Acta. 2013 Jun;1832(6):773-9. doi: 10.1016/j.bbadis.2013.02.012. Epub 2013 Feb 24.
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Targeting cellular metabolism to improve cancer therapeutics.靶向细胞代谢以改善癌症治疗。
Cell Death Dis. 2013 Mar 7;4(3):e532. doi: 10.1038/cddis.2013.60.

耐药白血病细胞中重编程的代谢:一种以对外源性谷氨酰胺依赖性降低为特征的代谢转变。

Rewired metabolism in drug-resistant leukemia cells: a metabolic switch hallmarked by reduced dependence on exogenous glutamine.

作者信息

Stäubert Claudia, Bhuiyan Hasanuzzaman, Lindahl Anna, Broom Oliver Jay, Zhu Yafeng, Islam Saiful, Linnarsson Sten, Lehtiö Janne, Nordström Anders

机构信息

From the Department of Molecular Biology, Umeå University, 90187 Umeå, Sweden, the Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, 90183 Umeå, Sweden, the Institute of Biochemistry, Faculty of Medicine, University of Leipzig, 04103 Leipzig, Germany.

Oncology-Pathology, Science for Life Laboratory, Karolinska Institutet, 17177 Stockholm, Sweden, and.

出版信息

J Biol Chem. 2015 Mar 27;290(13):8348-59. doi: 10.1074/jbc.M114.618769. Epub 2015 Feb 19.

DOI:10.1074/jbc.M114.618769
PMID:25697355
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4375488/
Abstract

Cancer cells that escape induction therapy are a major cause of relapse. Understanding metabolic alterations associated with drug resistance opens up unexplored opportunities for the development of new therapeutic strategies. Here, we applied a broad spectrum of technologies including RNA sequencing, global untargeted metabolomics, and stable isotope labeling mass spectrometry to identify metabolic changes in P-glycoprotein overexpressing T-cell acute lymphoblastic leukemia (ALL) cells, which escaped a therapeutically relevant daunorubicin treatment. We show that compared with sensitive ALL cells, resistant leukemia cells possess a fundamentally rewired central metabolism characterized by reduced dependence on glutamine despite a lack of expression of glutamate-ammonia ligase (GLUL), a higher demand for glucose and an altered rate of fatty acid β-oxidation, accompanied by a decreased pantothenic acid uptake capacity. We experimentally validate our findings by selectively targeting components of this metabolic switch, using approved drugs and starvation approaches followed by cell viability analyses in both the ALL cells and in an acute myeloid leukemia (AML) sensitive/resistant cell line pair. We demonstrate how comparative metabolomics and RNA expression profiling of drug-sensitive and -resistant cells expose targetable metabolic changes and potential resistance markers. Our results show that drug resistance is associated with significant metabolic costs in cancer cells, which could be exploited using new therapeutic strategies.

摘要

逃避诱导治疗的癌细胞是复发的主要原因。了解与耐药性相关的代谢改变为开发新的治疗策略带来了尚未探索的机会。在这里,我们应用了广泛的技术,包括RNA测序、全局非靶向代谢组学和稳定同位素标记质谱,以鉴定过表达P-糖蛋白的T细胞急性淋巴细胞白血病(ALL)细胞中的代谢变化,这些细胞逃避了具有治疗相关性的柔红霉素治疗。我们表明,与敏感的ALL细胞相比,耐药白血病细胞具有根本上重新布线的中心代谢,其特征是尽管缺乏谷氨酸-氨连接酶(GLUL)的表达,但对谷氨酰胺的依赖性降低,对葡萄糖的需求增加,脂肪酸β-氧化速率改变,同时泛酸摄取能力下降。我们通过使用批准的药物和饥饿方法选择性地靶向这种代谢开关的成分,然后在ALL细胞和急性髓系白血病(AML)敏感/耐药细胞系对中进行细胞活力分析,对我们的发现进行了实验验证。我们展示了药物敏感和耐药细胞的比较代谢组学和RNA表达谱如何揭示可靶向的代谢变化和潜在的耐药标记。我们的结果表明,耐药性与癌细胞中显著的代谢成本相关,这可以通过新的治疗策略加以利用。