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烯醇化酶抑制剂作为针对……的早期先导治疗药物

Enolase Inhibitors as Early Lead Therapeutics against .

作者信息

Roster Colm P, LaVigne Danielle, Milanes Jillian E, Knight Emily, Anderson Heidi D, Pizarro Sabrina, Harding Elijah M, Morris Meredith T, Yan Victoria C, Pham Cong-Dat, Muller Florian, Kwain Samuel, Rees Kerrick C, Dominy Brian, Whitehead Daniel C, Uddin Md Nasir, Millward Steven W, Morris James C

机构信息

Eukaryotic Pathogens Innovation Center, Department of Genetics and Biochemistry, Clemson University, Clemson, SC 29634, USA.

Department of Cancer Systems Imaging, UT MD Anderson Cancer Center, Houston, TX 77030, USA.

出版信息

Pathogens. 2023 Oct 28;12(11):1290. doi: 10.3390/pathogens12111290.

Abstract

Glucose metabolism is critical for the African trypanosome, , serving as the lone source of ATP production for the bloodstream form (BSF) parasite in the glucose-rich environment of the host blood. Recently, phosphonate inhibitors of human enolase (ENO), the enzyme responsible for the interconversion of 2-phosphoglycerate (2-PG) to phosphoenolpyruvate (PEP) in glycolysis or PEP to 2-PG in gluconeogenesis, have been developed for the treatment of glioblastoma multiforme (GBM). Here, we have tested these agents against ENO (ENO) and found the compounds to be potent enzyme inhibitors and trypanocides. For example, (1-hydroxy-2-oxopyrrolidin-3-yl) phosphonic acid (deoxy-SF2312) was a potent enzyme inhibitor (IC value of 0.60 ± 0.23 µM), while a six-membered ring-bearing phosphonate, (1-hydroxy-2-oxopiperidin-3-yl) phosphonic acid (HEX), was less potent (IC value of 2.1 ± 1.1 µM). An analog with a larger seven-membered ring, (1-hydroxy-2-oxoazepan-3-yl) phosphonic acid (HEPTA), was not active. Molecular docking simulations revealed that deoxy-SF2312 and HEX had binding affinities of -6.8 and -7.5 kcal/mol, respectively, while the larger HEPTA did not bind as well, with a binding of affinity of -4.8 kcal/mol. None of these compounds were toxic to BSF parasites; however, modification of enzyme-active phosphonates through the addition of pivaloyloxymethyl (POM) groups improved activity against , with POM-modified (1,5-dihydroxy-2-oxopyrrolidin-3-yl) phosphonic acid (POMSF) and POMHEX having EC values of 0.45 ± 0.10 and 0.61 ± 0.08 µM, respectively. These findings suggest that HEX is a promising lead against and that further development of prodrug HEX analogs is warranted.

摘要

葡萄糖代谢对于非洲锥虫至关重要,在宿主血液富含葡萄糖的环境中,它是血流形式(BSF)寄生虫唯一的ATP产生来源。最近,已开发出用于治疗多形性胶质母细胞瘤(GBM)的人烯醇化酶(ENO)的膦酸酯抑制剂,该酶负责糖酵解中2-磷酸甘油酸(2-PG)与磷酸烯醇丙酮酸(PEP)的相互转化或糖异生中PEP与2-PG的相互转化。在此,我们针对锥虫烯醇化酶(TbrENO)测试了这些药物,发现这些化合物是有效的酶抑制剂和杀锥虫剂。例如,(1-羟基-2-氧代吡咯烷-3-基)膦酸(脱氧-SF2312)是一种有效的酶抑制剂(IC值为0.60±0.23μM),而带有六元环的膦酸酯(1-羟基-2-氧代哌啶-3-基)膦酸(HEX)的效力较低(IC值为2.1±1.1μM)。具有更大七元环的类似物(1-羟基-2-氧代氮杂环庚烷-3-基)膦酸(HEPTA)没有活性。分子对接模拟显示,脱氧-SF2312和HEX的结合亲和力分别为-6.8和-7.5 kcal/mol,而更大的HEPTA结合效果不佳,结合亲和力为-4.8 kcal/mol。这些化合物对BSF寄生虫均无毒;然而,通过添加新戊酰氧基甲基(POM)基团对酶活性膦酸酯进行修饰可提高对锥虫的活性,POM修饰的(1,5-二羟基-2-氧代吡咯烷-3-基)膦酸(POMSF)和POMHEX的EC值分别为0.45±0.10和0.61±0.08μM。这些发现表明,HEX是一种有前景的抗锥虫先导化合物,有必要进一步开发前药HEX类似物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/069f/10675445/1bd8f35dde66/pathogens-12-01290-g001.jpg

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