Antitumor Activity of the Glutaminase Inhibitor CB-839 in Triple-Negative Breast Cancer

谷氨酰胺酶 谷氨酰胺 三阴性乳腺癌 谷氨酰胺分解 癌症研究 紫杉醇 细胞培养 化学 生物 癌症 药理学 乳腺癌 生物化学 内科学 医学 氨基酸 遗传学
作者
Matt I. Gross,Susan D. Demo,Jennifer B. Dennison,Lijing Chen,Tania Chernov-Rogan,Bindu Goyal,Julie R. Janes,Guy J. Laidig,Evan R. Lewis,Jun Li,Andrew L. MacKinnon,Francesco Parlati,Mirna L.M. Rodriguez,Peter J. Shwonek,Eric B. Sjogren,Timothy F. Stanton,Taotao Wang,Jinfu Yang,Frances Zhao,Mark K. Bennett
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:13 (4): 890-901 被引量:840
标识
DOI:10.1158/1535-7163.mct-13-0870
摘要

Abstract Glutamine serves as an important source of energy and building blocks for many tumor cells. The first step in glutamine utilization is its conversion to glutamate by the mitochondrial enzyme glutaminase. CB-839 is a potent, selective, and orally bioavailable inhibitor of both splice variants of glutaminase (KGA and GAC). CB-839 had antiproliferative activity in a triple-negative breast cancer (TNBC) cell line, HCC-1806, that was associated with a marked decrease in glutamine consumption, glutamate production, oxygen consumption, and the steady-state levels of glutathione and several tricarboxylic acid cycle intermediates. In contrast, no antiproliferative activity was observed in an estrogen receptor–positive cell line, T47D, and only modest effects on glutamine consumption and downstream metabolites were observed. Across a panel of breast cancer cell lines, GAC protein expression and glutaminase activity were elevated in the majority of TNBC cell lines relative to receptor positive cells. Furthermore, the TNBC subtype displayed the greatest sensitivity to CB-839 treatment and this sensitivity was correlated with (i) dependence on extracellular glutamine for growth, (ii) intracellular glutamate and glutamine levels, and (iii) GAC (but not KGA) expression, a potential biomarker for sensitivity. CB-839 displayed significant antitumor activity in two xenograft models: as a single agent in a patient-derived TNBC model and in a basal like HER2+ cell line model, JIMT-1, both as a single agent and in combination with paclitaxel. Together, these data provide a strong rationale for the clinical investigation of CB-839 as a targeted therapeutic in patients with TNBC and other glutamine-dependent tumors. Mol Cancer Ther; 13(4); 890–901. ©2014 AACR.
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