Fisher A B, Dodia C
Institute for Environmental Medicine, University of Pennsylvania School of Medicine, 1 John Morgan Building, 3620 Hamilton Walk, Philadelphia, PA 19104, USA.
Am J Physiol Lung Cell Mol Physiol. 2001 Apr;280(4):L748-54. doi: 10.1152/ajplung.2001.280.4.L748.
This study evaluated the role of a lysosomal-type phospholipase A2 (aiPLA(2)) in the degradation of internalized dipalmitoylphosphatidylcholine (DPPC) and in phospholipid synthesis by the rat lung. Uptake and degradation of DPPC were measured in isolated perfused rat lungs over 3 h following endotracheal instillation of [(3)H]DPPC in mixed unilamellar liposomes plus or minus MJ33, a specific inhibitor of lung aiPLA(2). Uptake of DPPC was calculated from total tissue-associated radiolabel, and degradation was calculated from the sum of radiolabel in degradation products. Both uptake and degradation were markedly stimulated by addition of 8-bromo-cAMP to the perfusate. MJ33 had no effect on DPPC uptake but decreased DPPC degradation at 3 h by approximately 40-50%. The effect of MJ33 on lung synthesis of DPPC was evaluated with intact rats over a 12- to 24-h period following intravenous injection of radiolabeled palmitate and choline. MJ33 treatment decreased palmitate incorporation into disaturated phosphatidylcholine of lamellar bodies and surfactant by approximately 65% at 24 h but had no effect on choline incorporation. This result is compatible with inhibition of the deacylation/reacylation pathway for DPPC synthesis. These results obtained with intact rat lungs indicate that aiPLA(2) is a major enzyme for degradation of internalized DPPC and also has an important role in DPPC synthesis.
本研究评估了溶酶体型磷脂酶A2(aiPLA(2))在大鼠肺对内源性二棕榈酰磷脂酰胆碱(DPPC)的降解以及磷脂合成中的作用。在向气管内注入包裹于混合单层脂质体中的[(3)H]DPPC(添加或不添加肺aiPLA(2)的特异性抑制剂MJ33)后,于3小时内测定分离的灌注大鼠肺中DPPC的摄取和降解情况。根据与组织相关的总放射性标记计算DPPC的摄取量,根据降解产物中放射性标记的总和计算降解量。向灌注液中添加8-溴-cAMP可显著刺激摄取和降解。MJ33对DPPC摄取无影响,但在3小时时使DPPC降解减少约40 - 50%。在静脉注射放射性标记的棕榈酸和胆碱后的12至24小时内,用完整大鼠评估MJ33对肺中DPPC合成的影响。MJ33处理在24小时时使棕榈酸掺入板层小体和表面活性剂的二饱和磷脂酰胆碱中的量减少约65%,但对胆碱掺入无影响。该结果与抑制DPPC合成的脱酰基/再酰基化途径相符。在完整大鼠肺中获得的这些结果表明,aiPLA(2)是降解内源性DPPC的主要酶,并且在DPPC合成中也起重要作用。