Griffith E C, Su Z, Niwayama S, Ramsay C A, Chang Y H, Liu J O
Center for Cancer Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Proc Natl Acad Sci U S A. 1998 Dec 22;95(26):15183-8. doi: 10.1073/pnas.95.26.15183.
Angiogenesis inhibitors are a novel class of promising therapeutic agents for treating cancer and other human diseases. Fumagillin and ovalicin compose a class of structurally related natural products that potently inhibit angiogenesis by blocking endothelial cell proliferation. A synthetic analog of fumagillin, TNP-470, is currently undergoing clinical trials for treatment of a variety of cancers. A common target for fumagillin and ovalicin recently was identified as the type 2 methionine aminopeptidase (MetAP2). These natural products bind MetAP2 covalently, inhibiting its enzymatic activity. The specificity of this binding is underscored by the lack of inhibition of the closely related type 1 enzyme, MetAP1. The molecular basis of the high affinity and specificity of these inhibitors for MetAP2 has remained undiscovered. To determine the structural elements of these inhibitors and MetAP2 that are involved in this interaction, we synthesized fumagillin analogs in which each of the potentially reactive epoxide groups was removed either individually or in combination. We found that the ring epoxide in fumagillin is involved in the covalent modification of MetAP2, whereas the side chain epoxide group is dispensable. By using a fumagillin analog tagged with fluorescein, His-231 in MetAP2 was identified as the residue that is covalently modified by fumagillin. Site-directed mutagenesis of His-231 demonstrated its importance for the catalytic activity of MetAP2 and confirmed that the same residue is covalently modified by fumagillin. These results, in agreement with a recent structural study, suggest that fumagillin and ovalicin inhibit MetAP2 by irreversible blockage of the active site.
血管生成抑制剂是一类新型的、有前景的治疗癌症和其他人类疾病的治疗药物。烟曲霉素和椭圆玫瑰树碱是一类结构相关的天然产物,它们通过阻断内皮细胞增殖来有效抑制血管生成。烟曲霉素的一种合成类似物TNP-470目前正在进行治疗多种癌症的临床试验。最近发现烟曲霉素和椭圆玫瑰树碱的一个共同靶点是2型甲硫氨酸氨肽酶(MetAP2)。这些天然产物与MetAP2共价结合,抑制其酶活性。与密切相关的1型酶MetAP1缺乏抑制作用突出了这种结合的特异性。这些抑制剂对MetAP2具有高亲和力和特异性的分子基础仍未被发现。为了确定这些抑制剂和MetAP2中参与这种相互作用的结构元件,我们合成了烟曲霉素类似物,其中每个潜在的反应性环氧基团被单独或组合去除。我们发现烟曲霉素中的环氧化物参与了MetAP2的共价修饰,而侧链环氧基团是可有可无的。通过使用标记有荧光素的烟曲霉素类似物,MetAP2中的His-231被确定为被烟曲霉素共价修饰的残基。对His-231进行定点诱变证明了其对MetAP2催化活性的重要性,并证实了同一残基被烟曲霉素共价修饰。这些结果与最近的一项结构研究一致,表明烟曲霉素和椭圆玫瑰树碱通过不可逆地阻断活性位点来抑制MetAP2。