Westlund P, Palmblad J, Falck J R, Lumin S
Department of Physiological Chemistry, Karolinska Institutet, Stockholm, Sweden.
Biochim Biophys Acta. 1991 Feb 5;1081(3):301-7. doi: 10.1016/0005-2760(91)90286-q.
An enantiospecific route for the synthesis of 11,12-dihydroxyeicosatetraenoic acids was developed and used to synthesize 11,12-dihydroxy-5(Z),7(E),9(E),14(Z)-eicosatetraenoic acids. The 11,12-DHETEs were synthesized with the stereochemistry of the hydroxyl group being 11(R),12(S) and 11(S),12(S). The synthetic compounds were used to elucidate the structure of 11,12-DHETEs formed in human platelets by comparison of the chromatographic retention time in HPLC and GC as well as their ion fragmentation pattern in GC-MS. The major 11,12-DHETE formed in human platelets was found to be identical with 11(R),12(S)-dihydroxy-5(Z),7(E),9(E),14(Z)-eicosatetraenoic acid. Two more compounds were tentatively identified as 11(S),12(S)-dihydroxy-5(Z),7(E),9(E),14(Z)-eicosatetraenoic acid and 11,12-dihydroxy-5(E),7(E),9(E),14(Z)-eicosatetraenoic acid. Furthermore, the 11(S),12(S)-dihydroxy-5(Z),7(E),9(E),14(Z)-eicosatetraenoic acid was found to possess biological activity on neutrophil functional responses. However, the major compound, 11(R),12(S)-dihydroxy-5(Z),7(E),9(E),14(Z)-eicosatetraenoic acid, formed in platelets lacks biological activity in the test systems used. The present data further support that 11,12-dihydroxy-eicosatetraenoic acids are formed in human platelets via a leukotriene like mechanism presumably by the 12-lipoxygenase. Furthermore, the biological effects of one of the compounds showed a unique activity profile compared to other lipoxygenase products.
开发了一种对映体特异性合成11,12-二羟基二十碳四烯酸的路线,并用于合成11,12-二羟基-5(Z),7(E),9(E),14(Z)-二十碳四烯酸。合成的11,12-二羟基二十碳四烯酸中,羟基的立体化学构型为11(R),12(S)和11(S),12(S)。通过比较高效液相色谱(HPLC)和气相色谱(GC)中的色谱保留时间以及气相色谱-质谱联用(GC-MS)中的离子碎片模式,利用合成化合物阐明了人血小板中形成的11,12-二羟基二十碳四烯酸的结构。发现人血小板中形成的主要11,12-二羟基二十碳四烯酸与11(R),12(S)-二羟基-5(Z),7(E),9(E),14(Z)-二十碳四烯酸相同。另外两种化合物初步鉴定为11(S),12(S)-二羟基-5(Z),7(E),9(E),14(Z)-二十碳四烯酸和11,12-二羟基-5(E),7(E),9(E),14(Z)-二十碳四烯酸。此外,发现11(S),12(S)-二羟基-5(Z),7(E),9(E),14(Z)-二十碳四烯酸对中性粒细胞功能反应具有生物学活性。然而,血小板中形成的主要化合物11(R),12(S)-二羟基-5(Z),7(E),9(E),14(Z)-二十碳四烯酸在所用测试系统中缺乏生物学活性。目前的数据进一步支持,11,12-二羟基二十碳四烯酸在人血小板中可能通过类似白三烯的机制由12-脂氧合酶形成。此外,与其他脂氧合酶产物相比,其中一种化合物的生物学效应显示出独特的活性谱。