Powell W S
Biochem Biophys Res Commun. 1987 Jun 30;145(3):991-8. doi: 10.1016/0006-291x(87)91533-6.
Rat polymorphonuclear leukocytes metabolize leukotriene B4 (LTB4) by at least two major pathways. LTB4 is converted by a reductase in these cells to a dihydro metabolite in which one of the three conjugated double bonds has been reduced to give a conjugated diene with a UV absorption maximum at 230 nm. DihydroLTB4 appears to be a key intermediate in the metabolism of LTB4 by rat polymorphonuclear leukocytes, since a number of other metabolites, exhibiting UV absorbance at 235 nm, but not at 280 nm, have been detected by high pressure liquid chromatography. In addition, these cells contain a 19-hydroxylase, which converts LTB4 to 19-hydroxyLTB4, which has a typical leukotriene UV spectrum, exhibiting absorption maxima at 261, 270, and 282 nm.
大鼠多形核白细胞通过至少两条主要途径代谢白三烯B4(LTB4)。LTB4在这些细胞中被一种还原酶转化为二氢代谢产物,其中三个共轭双键之一被还原,形成一个共轭二烯,其紫外线吸收最大值在230nm处。二氢LTB4似乎是大鼠多形核白细胞代谢LTB4的关键中间体,因为通过高压液相色谱法已检测到许多其他代谢产物,它们在235nm处有紫外线吸收,但在280nm处没有。此外,这些细胞含有一种19-羟化酶,它将LTB4转化为19-羟基LTB4,后者具有典型的白三烯紫外线光谱,在261、270和282nm处有吸收最大值。