Department of Experimental Pathology, University of Bologna, Via San Giacomo 14, 40126 Bologna, Italy.
ChemMedChem. 2012 Feb 6;7(2):311-7. doi: 10.1002/cmdc.201100471. Epub 2011 Nov 4.
One of the most prominent alterations in cancer cells is their strict dependence on the glycolytic pathway for ATP generation. This observation led to the evaluation of glycolysis inhibitors as potential anticancer agents. The inhibition of lactate dehydrogenase (LDH) is a promising way to inhibit tumor cell glucose metabolism without affecting the energetic balance of normal tissues. However, the success of this approach depends chiefly on the availability of inhibitors that display good selectivity. We identified a compound (galloflavin, CAS 568-80-9) which, in contrast to other inhibitors of human LDH, hinders both the A and B isoforms of the enzyme. To determine the mechanism of action, we collected LDH-A and -B inhibition data in competition reactions with pyruvate or NADH and evaluated the results using software for enzyme kinetics analysis. We found that galloflavin inhibits both human LDH isoforms by preferentially binding the free enzyme, without competing with the substrate or cofactor. The calculated Ki values for pyruvate were 5.46 μM (LDH-A) and 15.06 μM (LDH-B). In cultured tumor cells, galloflavin blocked aerobic glycolysis at micromolar concentrations, did not interfere with cell respiration, and induced cell death by triggering apoptosis. To our knowledge, the inhibition of LDH is, to date, the only biochemical effect described for galloflavin. Because galloflavin is not commercially available, we also describe herein a procedure for its synthesis and report its first full chemical characterization.
癌细胞中最显著的改变之一是它们严格依赖糖酵解途径来产生 ATP。这一观察结果导致人们评估糖酵解抑制剂作为潜在的抗癌药物。抑制乳酸脱氢酶(LDH)是抑制肿瘤细胞葡萄糖代谢而不影响正常组织能量平衡的一种很有前途的方法。然而,这种方法的成功主要取决于是否有具有良好选择性的抑制剂。我们发现了一种化合物(金丝桃素,CAS 568-80-9),与其他人类 LDH 抑制剂不同,它可以抑制酶的 A 和 B 两种同工酶。为了确定作用机制,我们在与丙酮酸或 NADH 的竞争反应中收集了 LDH-A 和 -B 的抑制数据,并使用酶动力学分析软件评估了结果。我们发现金丝桃素通过优先结合游离酶而抑制两种人源 LDH 同工酶,而不与底物或辅因子竞争。对于丙酮酸,计算得到的 Ki 值分别为 5.46 μM(LDH-A)和 15.06 μM(LDH-B)。在培养的肿瘤细胞中,金丝桃素在微摩尔浓度下即可阻断有氧糖酵解,不干扰细胞呼吸,并通过触发细胞凋亡诱导细胞死亡。据我们所知,到目前为止,抑制 LDH 是金丝桃素所描述的唯一生化作用。由于金丝桃素无法商业获取,我们还在此处描述了其合成方法,并报告了其首次全面的化学特性描述。