Institute of Biochemistry, University Medicine Berlin - Charité, Oudenarder Str. 16, 13347 Berlin, Germany.
Arch Biochem Biophys. 2013 Feb 1;530(1):40-7. doi: 10.1016/j.abb.2012.11.015. Epub 2012 Dec 12.
5-Lipoxygenase (ALOX5) is a key enzyme in biosynthesis of pro-inflammatory leukotrienes whereas 15-lipoxygenases (ALOX15) have been implicated in the formation of pro-resolving eicosanoids (lipoxins, resolvins). Although mammalian LOX-isoforms share a high degree of structural similarity X-ray coordinates indicated that the substrate-binding pocket of ALOX5 is some 20% bigger than that of ALOX15 suggesting the possibility of interconverting the two isoenzymes. To test this "space-based" hypothesis we reduced the volume of the substrate-binding pocket of mouse Alox5 by introducing space-filling amino acids at critical positions and found that multiple mutations at Phe359, Ala424, Asn425 and Ala603 of Alox5 led to gradual increase in 15-HETE formation. The Phe359Trp + Ala424Ile + Asn425Met Alox5 triple mutant was a major (67 ± 2%) 15-lipoxygenating enzyme and similar data were confirmed for human ALOX5. Structural modeling on the basis of the X-ray coordinates of ALOX5 indicated that the volume of the substrate-binding pocket inversely correlates with the share of 15-HETE biosynthesis for the human (r(2) = 0.79, p < 0.05) and the mouse (r(2) = 0.59, p < 0.01) enzyme. This data proves the principle possibility of converting pro-inflammatory 5-lipoxygenases to anti-inflammatory 15-lipoxygenases by reducing the volume of the substrate-binding pocket.
5-脂氧合酶(ALOX5)是生物合成促炎白三烯的关键酶,而 15-脂氧合酶(ALOX15)则参与形成促炎消退素(脂氧素、消退素)。尽管哺乳动物 LOX 同工酶具有高度的结构相似性,但 X 射线坐标表明 ALOX5 的底物结合口袋比 ALOX15 大约 20%,这表明两种同工酶之间存在相互转化的可能性。为了验证这一“基于空间”的假说,我们通过在关键位置引入空间填充氨基酸来减少小鼠 Alox5 底物结合口袋的体积,发现 Alox5 中的多个突变(如 Phe359、Ala424、Asn425 和 Ala603)导致 15-HETE 形成逐渐增加。Alox5 的 Phe359Trp + Ala424Ile + Asn425Met 三突变体是主要的(67 ± 2%)15-脂氧合酶,并且人类 ALOX5 的类似数据也得到了证实。基于 ALOX5 的 X 射线坐标的结构建模表明,底物结合口袋的体积与人类(r² = 0.79,p < 0.05)和小鼠(r² = 0.59,p < 0.01)酶的 15-HETE 生物合成份额成反比。这些数据证明了通过减小底物结合口袋的体积将促炎 5-脂氧合酶转化为抗炎 15-脂氧合酶的原则可能性。