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Attacking the supply wagons to starve cancer cells to death.攻击补给车以饿死癌细胞。
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3
Azacyclic FTY720 Analogues That Limit Nutrient Transporter Expression but Lack S1P Receptor Activity and Negative Chronotropic Effects Offer a Novel and Effective Strategy to Kill Cancer Cells in Vivo.限制营养转运蛋白表达但缺乏S1P受体活性和负性变时作用的氮杂环FTY720类似物为体内杀死癌细胞提供了一种新颖有效的策略。
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The Utilization of Extracellular Proteins as Nutrients Is Suppressed by mTORC1.mTORC1抑制细胞外蛋白质作为营养物质的利用。
Cell. 2015 Jul 16;162(2):259-270. doi: 10.1016/j.cell.2015.06.017. Epub 2015 Jul 2.
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MYC oncogene overexpression drives renal cell carcinoma in a mouse model through glutamine metabolism.MYC癌基因的过表达通过谷氨酰胺代谢在小鼠模型中驱动肾细胞癌。
Proc Natl Acad Sci U S A. 2015 May 26;112(21):6539-44. doi: 10.1073/pnas.1507228112. Epub 2015 May 11.
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Up-regulation of lysosomal TRPML1 channels is essential for lysosomal adaptation to nutrient starvation.溶酶体瞬时受体电位Mucolipin 1(TRPML1)通道的上调对于溶酶体适应营养饥饿至关重要。
Proc Natl Acad Sci U S A. 2015 Mar 17;112(11):E1373-81. doi: 10.1073/pnas.1419669112. Epub 2015 Mar 2.
7
Cholesterol uptake disruption, in association with chemotherapy, is a promising combined metabolic therapy for pancreatic adenocarcinoma.胆固醇摄取阻断联合化疗是一种有前景的胰腺癌联合代谢疗法。
Proc Natl Acad Sci U S A. 2015 Feb 24;112(8):2473-8. doi: 10.1073/pnas.1421601112. Epub 2015 Feb 9.
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Biological and therapeutic impact of intratumor heterogeneity in cancer evolution.肿瘤内异质性在癌症进化中的生物学和治疗影响。
Cancer Cell. 2015 Jan 12;27(1):15-26. doi: 10.1016/j.ccell.2014.12.001.
9
PI(5)P regulates autophagosome biogenesis.磷脂酰肌醇5磷酸(PI(5)P)调节自噬体的生物发生。
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10
Feedback suppression of PI3Kα signaling in PTEN-mutated tumors is relieved by selective inhibition of PI3Kβ.PTEN 突变型肿瘤中 PI3Kα 信号的反馈抑制可被选择性抑制 PI3Kβ 缓解。
Cancer Cell. 2015 Jan 12;27(1):109-22. doi: 10.1016/j.ccell.2014.11.008. Epub 2014 Dec 24.

通过同时破坏平行的营养物质获取途径来靶向癌症代谢。

Targeting cancer metabolism by simultaneously disrupting parallel nutrient access pathways.

作者信息

Kim Seong M, Roy Saurabh G, Chen Bin, Nguyen Tiffany M, McMonigle Ryan J, McCracken Alison N, Zhang Yanling, Kofuji Satoshi, Hou Jue, Selwan Elizabeth, Finicle Brendan T, Nguyen Tricia T, Ravi Archna, Ramirez Manuel U, Wiher Tim, Guenther Garret G, Kono Mari, Sasaki Atsuo T, Weisman Lois S, Potma Eric O, Tromberg Bruce J, Edwards Robert A, Hanessian Stephen, Edinger Aimee L

出版信息

J Clin Invest. 2016 Nov 1;126(11):4088-4102. doi: 10.1172/JCI87148. Epub 2016 Sep 26.

DOI:10.1172/JCI87148
PMID:27669461
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5096903/
Abstract

Oncogenic mutations drive anabolic metabolism, creating a dependency on nutrient influx through transporters, receptors, and macropinocytosis. While sphingolipids suppress tumor growth by downregulating nutrient transporters, macropinocytosis and autophagy still provide cancer cells with fuel. Therapeutics that simultaneously disrupt these parallel nutrient access pathways have potential as powerful starvation agents. Here, we describe a water-soluble, orally bioavailable synthetic sphingolipid, SH-BC-893, that triggers nutrient transporter internalization and also blocks lysosome-dependent nutrient generation pathways. SH-BC-893 activated protein phosphatase 2A (PP2A), leading to mislocalization of the lipid kinase PIKfyve. The concomitant mislocalization of the PIKfyve product PI(3,5)P2 triggered cytosolic vacuolation and blocked lysosomal fusion reactions essential for LDL, autophagosome, and macropinosome degradation. By simultaneously limiting access to both extracellular and intracellular nutrients, SH-BC-893 selectively killed cells expressing an activated form of the anabolic oncogene Ras in vitro and in vivo. However, slower-growing, autochthonous PTEN-deficient prostate tumors that did not exhibit a classic Warburg phenotype were equally sensitive. Remarkably, normal proliferative tissues were unaffected by doses of SH-BC-893 that profoundly inhibited tumor growth. These studies demonstrate that simultaneously blocking parallel nutrient access pathways with sphingolipid-based drugs is broadly effective and cancer selective, suggesting a potential strategy for overcoming the resistance conferred by tumor heterogeneity.

摘要

致癌突变驱动合成代谢,使癌细胞依赖通过转运蛋白、受体和巨胞饮作用摄取营养物质。虽然鞘脂通过下调营养转运蛋白来抑制肿瘤生长,但巨胞饮作用和自噬仍可为癌细胞提供能量。同时阻断这些平行营养获取途径的疗法有望成为强大的饥饿剂。在此,我们描述了一种水溶性、口服生物可利用的合成鞘脂SH-BC-893,它能触发营养转运蛋白内化,并阻断溶酶体依赖性营养生成途径。SH-BC-893激活蛋白磷酸酶2A(PP2A),导致脂质激酶PIKfyve定位错误。PIKfyve产物PI(3,5)P2随之发生的定位错误引发胞质空泡化,并阻断了低密度脂蛋白、自噬体和巨吞饮体降解所必需的溶酶体融合反应。通过同时限制细胞外和细胞内营养物质的获取,SH-BC-893在体外和体内选择性地杀死表达合成代谢致癌基因Ras激活形式的细胞。然而,生长较慢、具有PTEN缺陷且未表现出典型瓦伯格表型的原发性前列腺肿瘤同样敏感。值得注意的是,正常增殖组织不受能显著抑制肿瘤生长的SH-BC-893剂量的影响。这些研究表明,用基于鞘脂的药物同时阻断平行营养获取途径具有广泛的有效性和癌症选择性,提示了一种克服肿瘤异质性所导致耐药性的潜在策略。