Hansen Finn K, Skinner-Adams Tina S, Duffy Sandra, Marek Linda, Sumanadasa Subathdrage D M, Kuna Krystina, Held Jana, Avery Vicky M, Andrews Katherine T, Kurz Thomas
Institute of Pharmaceutical and Medicinal Chemistry, Heinrich Heine University Düsseldorf, 40225 Düsseldorf (Germany).
ChemMedChem. 2014 Mar;9(3):665-70. doi: 10.1002/cmdc.201300469. Epub 2014 Feb 4.
Histone deacetylase (HDAC) inhibitors are an emerging class of potential antimalarial drugs. We investigated the antiplasmodial properties of 16 alkoxyurea-based HDAC inhibitors containing various cap and zinc binding groups (ZBGs). Ten compounds displayed sub-micromolar activity against the 3D7 line of Plasmodium falciparum. Structure-activity relationship studies revealed that a hydroxamic acid ZBG is crucial for antiplasmodial activity, and that the introduction of bulky alkyl substituents to cap groups increases potency against asexual blood-stage parasites. We also demonstrate that selected compounds cause hyperacetylation of P. falciparum histone H4, indicating inhibition of one or more PfHDACs. To assess the selectivity of alkoxyurea-based HDAC inhibitors for parasite over normal mammalian cells, the cytotoxicity of representative compounds was evaluated against neonatal foreskin fibroblast (NFF) cells. The most active compound, 6-((3-(4-(tert-butyl)phenyl)ureido)oxy)-N-hydroxyhexanamide (1 e, Pf3D7 IC50 : 0.16 μM) was 31-fold more toxic against the asexual blood stages than towards normal mammalian cells. Moreover, a subset of four structurally diverse HDAC inhibitors revealed moderate activity against late-stage (IV-V) gametocytes.
组蛋白去乙酰化酶(HDAC)抑制剂是一类新兴的潜在抗疟药物。我们研究了16种含有不同封端基团和锌结合基团(ZBGs)的基于烷氧基脲的HDAC抑制剂的抗疟特性。十种化合物对恶性疟原虫3D7株表现出亚微摩尔活性。构效关系研究表明,异羟肟酸ZBG对抗疟活性至关重要,并且在封端基团中引入庞大的烷基取代基可增强对无性血液期寄生虫的效力。我们还证明,所选化合物会导致恶性疟原虫组蛋白H4的高度乙酰化,表明对一种或多种PfHDACs有抑制作用。为了评估基于烷氧基脲的HDAC抑制剂对寄生虫相对于正常哺乳动物细胞的选择性,对代表性化合物对新生儿包皮成纤维细胞(NFF)的细胞毒性进行了评估。活性最高的化合物6 - ((3 - (4 - (叔丁基)苯基)脲基)氧基)-N - 羟基己酰胺(1 e,Pf3D7 IC50:0.16 μM)对无性血液期的毒性比对正常哺乳动物细胞高31倍。此外,一组四种结构不同的HDAC抑制剂对晚期(IV - V)配子体表现出中等活性。