Cody Vivian, Pace Jim
Structural Biology Department, Hauptman-Woodward Medical Research Institute, Buffalo, New York 14203, USA.
Acta Crystallogr D Biol Crystallogr. 2011 Jan;67(Pt 1):1-7. doi: 10.1107/S0907444910041004. Epub 2010 Dec 16.
Structural data are reported for five antifolates, namely 2,4-diamino-6-[5'-(5-carboxypentyloxy)-2'-methoxybenzyl]-5-methylpyrido[2,3-d]pyrimidine, (1), and the 5'-[3-(ethoxycarbonyl)propoxy]-, (2), 5'-[3-(ethoxycarbonyl)butoxy]-, (3), 5'-[3-(ethoxycarbonyl)pentyloxy]-, (4), and 5'-benzyloxy-, (5), derivatives, which are potent and selective for Pneumocystis carinii dihydrofolate reductase (pcDHFR). Crystal structures are reported for their ternary complexes with NADPH and pcDHFR refined to between 1.4 and 2.0 Å resolution and for that of 3 with human DHFR (hDHFR) to 1.8 Å resolution. These data reveal that the carboxylate of the ω-carboxyalkoxy side chain of 1, the most potent inhibitor in this series, forms ionic interactions with the conserved Arg75 in the substrate-binding pocket of pcDHFR, whereas the less potent ethyl esters of 2-4 bind with variable side-chain conformations. The benzyloxy side chain of 5 makes no contact with Arg75 and is the least active inhibitor in this series. These structural results suggest that the weaker binding of this series compared with that of their pyrimidine homologs in part arises from the flexibility observed in their side-chain conformations, which do not optimize intermolecular contact to Arg75. Structural data for the binding of 3 to both hDHFR and pcDHFR reveals that the inhibitor binds in two different conformations, one similar to each of the two conformations observed for the parent pyrido[2,3-d]pyrimidine, piritrexim (PTX), bound to hDHFR. The structure of the pcDHFR complex of 4 reveals disorder in the side-chain orientation; one orientation has the ω-carboxyalkoxy side chain positioned in the folate-binding pocket similar to the others in this series, while the second orientation occupies a new site near the nicotinamide ring of NADPH. This alternate binding site has not been observed in other DHFR structures. Structural data for the pcDHFR complex of 5 show that its benzyl side chain forms intermolecular van der Waals interactions with Phe69 in the binding pocket that could account for its enhanced binding selectivity compared with the other analogs in this series.
报道了5种抗叶酸药物的结构数据,即2,4 -二氨基-6-[5'-(5 -羧基戊氧基)-2'-甲氧基苄基]-5 -甲基吡啶并[2,3 - d]嘧啶(1)及其5'-[3-(乙氧羰基)丙氧基]衍生物(2)、5'-[3-(乙氧羰基)丁氧基]衍生物(3)、5'-[3-(乙氧羰基)戊氧基]衍生物(4)和5'-苄氧基衍生物(5),这些化合物对卡氏肺孢子虫二氢叶酸还原酶(pcDHFR)具有强效且选择性的抑制作用。报道了它们与NADPH和pcDHFR形成的三元复合物的晶体结构,分辨率在1.4至2.0 Å之间,还报道了化合物3与人二氢叶酸还原酶(hDHFR)形成的复合物的晶体结构,分辨率为1.8 Å。这些数据表明,该系列中活性最强的抑制剂1的ω -羧基烷氧基侧链的羧酸盐与pcDHFR底物结合口袋中保守的Arg75形成离子相互作用,而活性较弱的2 - 4的乙酯以可变的侧链构象结合。化合物5的苄氧基侧链不与Arg75接触,是该系列中活性最低的抑制剂。这些结构结果表明,与它们的嘧啶同系物相比,该系列化合物结合较弱部分是由于其侧链构象的灵活性,这种灵活性无法优化与Arg75的分子间接触。化合物3与hDHFR和pcDHFR结合的结构数据表明,该抑制剂以两种不同构象结合,其中一种与母体吡啶并[2,3 - d]嘧啶吡利霉素(PTX)与hDHFR结合时观察到的两种构象之一相似。化合物4与pcDHFR复合物的结构显示侧链取向无序;一种取向中ω -羧基烷氧基侧链位于叶酸结合口袋中,与该系列中的其他化合物类似,而第二种取向占据了NADPH烟酰胺环附近的一个新位点。这种交替结合位点在其他DHFR结构中未观察到。化合物5与pcDHFR复合物的结构数据表明,其苄基侧链与结合口袋中的Phe69形成分子间范德华相互作用,这可以解释其与该系列中其他类似物相比增强的结合选择性。