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发现酰胺桥接的吡咯并[2,3-d]嘧啶类化合物作为肿瘤靶向的经典抗叶酸剂,通过叶酸受体 α 选择性摄取,并抑制从头嘌呤核苷酸生物合成。

Discovery of amide-bridged pyrrolo[2,3-d]pyrimidines as tumor targeted classical antifolates with selective uptake by folate receptor α and inhibition of de novo purine nucleotide biosynthesis.

机构信息

Division of Medicinal Chemistry, Graduate School of Pharmaceutical Sciences, Duquesne University, 600 Forbes Avenue, Pittsburgh, PA 15282, United States.

Department of Oncology, Wayne State University School of Medicine, Detroit, MI 48201, United States.

出版信息

Bioorg Med Chem. 2019 Dec 1;27(23):115125. doi: 10.1016/j.bmc.2019.115125. Epub 2019 Oct 17.

Abstract

We previously showed that classical 6-substituted pyrrolo[2,3-d]pyrimidine antifolates bind to folate receptor (FR) α and the target purine biosynthetic enzyme glycinamide ribonucleotide formyltransferase (GARFTase) with different cis and trans conformations. In this study, we designed novel analogs of this series with an amide moiety in the bridge region that can adopt both the cis and trans lowest energy conformations. This provides entropic benefit, by restricting the number of side-chain conformations of the unbound ligand to those most likely to promote binding to FRα and the target enzyme required for antitumor activity. NMR of the most active compound 7 showed both cis and trans amide bridge conformations in ~1:1 ratio. The bridge amide group in the best docked poses of 7 in the crystal structures of FRα and GARFTase adopted both cis and trans conformations, with the lowest energy conformations predicted by Maestro and evidenced by NMR within 1 kcal/mol. Compound 7 showed ~3-fold increased inhibition of FRα-expressing cells over its non-restricted parent analog 1 and was selectively internalized by FRα over the reduced folate carrier (RFC), resulting in significant in vitro antitumor activity toward FRα-expressing KB human tumor cells. Antitumor activity of 7 was abolished by treating cells with adenosine but was incompletely protected by 5-aminoimidazole-4-carboxamide (AICA) at higher drug concentrations, suggesting GARFTase and AICA ribonucleotide formyltransferase (AICARFTase) in de novo purine biosynthesis as the likely intracellular targets. GARFTase inhibition by compound 7 was confirmed by an in situ cell-based activity assay. Our results identify a "first-in-class" classical antifolate with a novel amide linkage between the scaffold and the side chain aryl L-glutamate that affords exclusive selectivity for transport via FRα over RFC and antitumor activity resulting from inhibition of GARFTase and likely AICARFTase. Compound 7 offers significant advantages over clinically used inhibitors of this class that are transported by the ubiquitous RFC, resulting in dose-limiting toxicities.

摘要

我们之前已经表明,经典的 6-取代吡咯并[2,3-d]嘧啶类抗叶酸药物以不同的顺式和反式构象与叶酸受体(FR)α和嘧啶生物合成酶甘氨酰胺核苷酸甲酰转移酶(GARFTase)结合。在这项研究中,我们设计了该系列的新型类似物,其中桥接区域具有酰胺部分,可采用顺式和反式最低能量构象。这提供了熵的好处,通过将未结合配体的侧链构象限制为最有可能促进与 FRα 结合以及与抗肿瘤活性所需的靶酶结合的构象。最活性化合物 7 的 NMR 显示顺式和反式酰胺桥构象的比例约为 1:1。7 在 FRα 和 GARFTase 晶体结构中的最佳对接构象中,桥酰胺基团采用顺式和反式构象,Maestro 预测的最低能量构象与 NMR 结果一致,相差不超过 1 kcal/mol。化合物 7 对表达 FRα 的细胞的抑制作用比其非受限亲本类似物 1 增加了约 3 倍,并且被 FRα 选择性内化,而不是还原叶酸载体(RFC),导致对表达 FRα 的 KB 人肿瘤细胞具有显著的体外抗肿瘤活性。用腺苷处理细胞可使 7 的抗肿瘤活性丧失,但在用更高药物浓度的 5-氨基咪唑-4-甲酰胺(AICA)处理时,保护不完全,表明从头嘌呤生物合成中的 GARFTase 和 AICA 核糖核苷酸甲酰转移酶(AICARFTase)可能是细胞内的靶标。化合物 7 对 GARFTase 的抑制作用通过原位细胞活性测定得到证实。我们的结果确定了一种“同类首创”的经典抗叶酸药物,其在支架和侧链芳基 L-谷氨酸之间具有新的酰胺键,从而提供了通过 FRα 而不是 RFC 进行运输的独特选择性,以及通过抑制 GARFTase 和可能的 AICARFTase 产生的抗肿瘤活性。与通过普遍存在的 RFC 转运的临床使用抑制剂相比,化合物 7 具有显著优势,可避免剂量限制毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b7/6857795/31179935fb12/nihms-1542417-f0002.jpg

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