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一种新型 AICARFT 抑制剂的特性研究,该抑制剂能有效提高 ZMP 水平,并在小鼠模型中具有抗肿瘤活性。

Characterization of a novel AICARFT inhibitor which potently elevates ZMP and has anti-tumor activity in murine models.

机构信息

Eli Lilly and Company, Lilly Research Laboratories, Indianapolis, Indiana, 46285, USA.

出版信息

Sci Rep. 2018 Oct 18;8(1):15458. doi: 10.1038/s41598-018-33453-4.

Abstract

AICARFT is a folate dependent catalytic site within the ATIC gene, part of the purine biosynthetic pathway, a pathway frequently upregulated in cancers. LSN3213128 is a potent (16 nM) anti-folate inhibitor of AICARFT and selective relative to TS, SHMT1, MTHFD1, MTHFD2 and MTHFD2L. Increases in ZMP, accompanied by activation of AMPK and cell growth inhibition, were observed with treatment of LY3213128. These effects on ZMP and proliferation were dependent on folate levels. In human breast MDA-MB-231met2 and lung NCI-H460 cell lines, growth inhibition was rescued by hypoxanthine, but not in the A9 murine cell line which is deficient in purine salvage. In athymic nude mice, LSN3213128 robustly elevates ZMP in MDA-MB-231met2, NCI-H460 and A9 tumors in a time and dose dependent manner. Significant tumor growth inhibition in human breast MDA-MB231met2 and lung NCI-H460 xenografts and in the syngeneic A9 tumor model were observed with oral administration of LSN3213128. Strikingly, AMPK appeared activated within the tumors and did not change even at high levels of intratumoral ZMP after weeks of dosing. These results support the evaluation of LSN3213128 as an antineoplastic agent.

摘要

AICARFT 是ATIC 基因中叶酸依赖性催化位点,属于嘌呤生物合成途径的一部分,该途径在癌症中经常上调。LSN3213128 是 AICARFT 的一种有效的(16nM)抗叶酸抑制剂,与 TS、SHMT1、MTHFD1、MTHFD2 和 MTHFD2L 相比具有选择性。用 LY3213128 处理会观察到 ZMP 增加,同时 AMPK 激活和细胞生长抑制。ZMP 和增殖的这些影响依赖于叶酸水平。在人乳腺癌 MDA-MB-231met2 和肺癌 NCI-H460 细胞系中,生长抑制可被次黄嘌呤挽救,但在嘌呤补救缺陷的 A9 鼠细胞系中不可挽救。在免疫缺陷裸鼠中,LSN3213128 以时间和剂量依赖的方式在 MDA-MB-231met2、NCI-H460 和 A9 肿瘤中强烈升高 ZMP。口服 LSN3213128 可显著抑制人乳腺癌 MDA-MB231met2 和肺癌 NCI-H460 异种移植瘤以及同源 A9 肿瘤模型的生长。引人注目的是,AMPK 在肿瘤内似乎被激活,即使在几周的剂量后肿瘤内 ZMP 水平很高,也没有改变。这些结果支持将 LSN3213128 作为抗肿瘤剂进行评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77a8/6193938/ea70b7157196/41598_2018_33453_Fig1_HTML.jpg

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