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A sulfoximine-based inhibitor of human asparagine synthetase kills l-asparaginase-resistant leukemia cells.

机译:基于人天冬酰胺合成酶的基于亚砜亚胺的抑制剂可杀死l-天冬酰胺酶耐药的白血病细胞。

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摘要

An adenylated sulfoximine transition-state analogue 1, which inhibits human asparagine synthetase (hASNS) with nanomolar potency, has been reported to suppress the proliferation of an l-asparagine amidohydrolase (ASNase)-resistant MOLT-4 leukemia cell line (MOLT-4R) when l-asparagine is depleted in the medium. We now report the synthesis and biological activity of two new sulfoximine analogues of 1 that have been studied as part of systematic efforts to identify compounds with improved cell permeability and/or metabolic stability. One of these new analogues, an amino sulfoximine 5 having no net charge at cellular pH, is a better hASNS inhibitor (K(I)(∗)=8nM) than 1 and suppresses proliferation of MOLT-4R cells at 10-fold lower concentration (IC(50)=0.1mM). More importantly, and in contrast to the lead compound 1, the presence of sulfoximine 5 at concentrations above 0.25mM causes the death of MOLT-4R cells even when ASNase is absent in the culture medium. The amino sulfoximine 5 exhibits different dose-response behavior when incubated with an ASNase-sensitive MOLT-4 cell line (MOLT-4S), supporting the hypothesis that sulfoximine 5 exerts its effect by inhibiting hASNS in the cell. Our work provides further evidence for the idea that hASNS represents a chemotherapeutic target for the treatment of leukemia, and perhaps other cancers, including those of the prostate.
机译:据报道,具有纳摩尔浓度的抑制人天冬酰胺合成酶(hASNS)的腺苷酸化亚砜亚胺过渡态类似物1可抑制对L-天冬酰胺酰胺水解酶(ASNase)耐药的MOLT-4白血病细胞系(MOLT-4R)的增殖。当培养基中的L-天冬酰胺耗尽时。现在,我们报告了两个新的1的亚砜亚胺类似物的合成和生物活性,这已作为系统研究的一部分进行研究,以鉴定具有改善的细胞渗透性和/或代谢稳定性的化合物。这些新的类似物之一是在细胞pH值下没有净电荷的氨基磺胺嘧啶5,是一种比1更好的hASNS抑制剂(K(I)(∗)= 8nM),并能以低10倍的浓度抑制MOLT-4R细胞的增殖(IC(50)= 0.1mM)。更重要的是,与先导化合物1相反,即使在培养基中不存在ASNase时,浓度超过0.25mM的亚磺酰亚胺5也会导致MOLT-4R细胞死亡。当与ASNase敏感的MOLT-4细胞系(MOLT-4S)孵育时,氨基亚砜亚胺5表现出不同的剂量反应,从而支持了亚砜亚胺5通过抑制hASNS在细胞中发挥作用的假设。我们的工作为hASNS代表了治疗白血病,可能还有其他癌症(包括前列腺癌)的化学治疗靶点提供了进一步的证据。

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