Tsao F H, Zachman R D
Pediatr Res. 1977 Jul;11(7):849-57. doi: 10.1203/00006450-197707000-00015.
The de novo cytidine-5'-diphosphocholine (CDP-choline) pathway enzymes: choline kinase (CK); phosphorylcholine cytidyltransferase (CyT), and phosphorylcholine glyceride transferase (PCGT), and the phosphatidylcholine-lysophosphatidylcholine (PC-lysolPC) cycle pathway enzymes: lysophospholipase (LPL), lysophosphatidylcholine-lysophosphatidylcholine acyltransferase (LAT), and acyl-CoA lysophosphatidylcholine acyltransferase (acyl-CoA LAT) were studied in the rabbit lung subcellular fractions. The purity of the fractions was examined by the marker enzymes and electron microscopy. The lamellar bodies had the highest concentration of phospholipids (10.0 mumol/mg protein, 80% of which was phosphatidylcholine (PC), about 10-fold higher than that of mitochondria (0.8) and microsomes (1.0) (50% of which was PC in both fractions). The lamellar bodies contained no enzymic activities of either the CDP-choline pathway or the PC-lysoPC cycle pathway. The enzymic activities of CK, CyT, LPL, and LAT were found mainly in the soluble fraction (about 40% for CK and CyT, and 70% for LPL and LAT); PCGT and acyl-CoA LAT were microsomal enzymes. Some general properties of PC-lysoPC cycle enzymes were also studied. The activities of LPL, LAT, and acyl-CoA LAT were not stimulated by the divalent metal ion Ca+. Their activities were inhibited by 10(-3) M diisopropyl phosphorofluoridate (DFP). The role of the PC-lysoPC cycle pathway enzymes in remodeling the lung PC is discussed.
对兔肺亚细胞组分中的从头合成胞苷-5'-二磷酸胆碱(CDP-胆碱)途径的酶:胆碱激酶(CK)、磷酸胆碱胞苷转移酶(CyT)和磷酸胆碱甘油酯转移酶(PCGT),以及磷脂酰胆碱-溶血磷脂酰胆碱(PC-溶血PC)循环途径的酶:溶血磷脂酶(LPL)、溶血磷脂酰胆碱-溶血磷脂酰胆碱酰基转移酶(LAT)和酰基辅酶A溶血磷脂酰胆碱酰基转移酶(酰基辅酶A LAT)进行了研究。通过标记酶和电子显微镜检查了各组分的纯度。板层小体中磷脂浓度最高(10.0 μmol/mg蛋白,其中80%为磷脂酰胆碱(PC),比线粒体(0.8)和微粒体(1.0)(这两个组分中50%为PC)高约10倍)。板层小体中既没有CDP-胆碱途径的酶活性,也没有PC-溶血PC循环途径的酶活性。CK、CyT、LPL和LAT的酶活性主要存在于可溶性组分中(CK和CyT约为40%,LPL和LAT约为70%);PCGT和酰基辅酶A LAT是微粒体酶。还研究了PC-溶血PC循环酶的一些一般特性。LPL、LAT和酰基辅酶A LAT的活性不受二价金属离子Ca+的刺激。它们的活性受到10⁻³ M二异丙基氟磷酸酯(DFP)的抑制。讨论了PC-溶血PC循环途径的酶在肺PC重塑中的作用。