State Key Laboratory of Bioorganic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Road, Shanghai 200032, China.
Bioorg Med Chem. 2013 May 1;21(9):2600-17. doi: 10.1016/j.bmc.2013.02.023. Epub 2013 Feb 21.
Cellular protein synthesis is initiated with methionine in eukaryotes with few exceptions. Methionine aminopeptidases (MetAPs) which catalyze the process of N-terminal methionine excision are essential for all organisms. In mammals, type 2 MetAP (MetAP2) is known to be important for angiogenesis, while type 1 MetAP (MetAP1) has been shown to play a pivotal role in cell proliferation. Our previous high-throughput screening of a commercial compound library uncovered a novel class of inhibitors for both human MetAP1 (HsMetAP1) and human MetAP2 (HsMetAP2). This class of inhibitors contains a pyridinylpyrimidine core. To understand the structure-activity relationship (SAR) and to search for analogues of 2 with greater potency and higher HsMetAP1-selectivity, a total of 58 analogues were acquired through either commercial source or by in-house synthesis and their inhibitory activities against HsMetAP1 and HsMetAP2 were determined. Through this systematic medicinal chemistry analysis, we have identified (1) 5-chloro-6-methyl-2-pyridin-2-ylpyrimidine as the minimum element for the inhibition of HsMetAP1; (2) 5'-chloro as the favored substituent on the pyridine ring for the enhanced potency against HsMetAP1; and (3) long C4 side chains as the essentials for higher HsMetAP1-selectivity. At the end of our SAR campaign, 25b, 25c, 26d and 30a-30c are among the most selective and potent inhibitors of purified HsMetAP1 reported to date. In addition, we also performed crystallographic analysis of one representative inhibitor (26d) in complex with N-terminally truncated HsMetAP1.
真核生物中,除了少数例外,细胞蛋白质合成都是从甲硫氨酸开始的。催化 N 端甲硫氨酸切除过程的氨肽酶(MetAPs)对所有生物都是必不可少的。在哺乳动物中,已证实 2 型氨肽酶(MetAP2)在血管生成中很重要,而 1 型氨肽酶(MetAP1)则在细胞增殖中发挥关键作用。我们之前对商业化合物文库进行高通量筛选,发现了一类新型的人 MetAP1(HsMetAP1)和人 MetAP2(HsMetAP2)抑制剂。这类抑制剂含有吡啶并嘧啶核心。为了了解结构-活性关系(SAR)并寻找具有更高活性和更高 HsMetAP1 选择性的 2 的类似物,我们总共通过商业来源或内部合成获得了 58 种类似物,并测定了它们对 HsMetAP1 和 HsMetAP2 的抑制活性。通过这种系统的药物化学分析,我们确定了:(1)5-氯-6-甲基-2-吡啶-2-基嘧啶是抑制 HsMetAP1 的最小元素;(2)吡啶环上的 5'-氯是增强对 HsMetAP1 活性的首选取代基;(3)长 C4 侧链是提高 HsMetAP1 选择性的关键。在 SAR 研究的最后,25b、25c、26d 和 30a-30c 是迄今为止报道的对纯化 HsMetAP1 选择性和活性最高的抑制剂之一。此外,我们还对一个代表性抑制剂(26d)与 N 端截断的 HsMetAP1 复合物进行了晶体学分析。