Pappu A, Hostetler K Y
Biochem Pharmacol. 1984 May 15;33(10):1639-44. doi: 10.1016/0006-2952(84)90286-7.
Rat liver lysosomal phospholipase A hydrolyzes both acidic and neutral phospholipids. Numerous cationic amphiphilic drugs including imipramine, propranolol, 4,4'-bis(diethylaminoethoxy)-alpha, beta- diethyldiphenylethane and chloropromazine inhibit phospholipase A. Cationic amphiphilic drugs bind readily to acidic phospholipids but much less readily to neutral phospholipids. Formation of drug-lipid complexes is thought to be an important mechanism involved in the inhibition of lysosomal phospholipases. Therefore, we studied the effects of four cationic amphiphilic inhibitors on lysosomal phospholipase A using one acidic and two neutral phospholipid substrates. The concentration of the drugs required to produce 50% inhibition was much higher when phosphatidylinositol was used as substrate. The degradation of phosphatidylethanolamine and phosphatidylcholine was more readily inhibited by these agents than that of phosphatidylinositol. In drug-induced lipidosis, the predominance of acidic phospholipids may be due to redirection of phospholipid metabolism towards the formation of acidic phospholipids with a resultant increased delivery of these lipids to lysosomes. Based on our results, it does not appear to be due to decreased enzymatic hydrolysis of drug-acidic phospholipid complexes, at least when pure phospholipid substrates are used. Lysosomal storage of both acidic and neutral phospholipids appears to be caused by inhibition of lysosomal phospholipase action in view of the probable high intralysosomal levels of these agents.
大鼠肝脏溶酶体磷脂酶A可水解酸性和中性磷脂。包括丙咪嗪、普萘洛尔、4,4'-双(二乙氨基乙氧基)-α,β-二乙基二苯乙烷和氯丙嗪在内的许多阳离子两亲性药物可抑制磷脂酶A。阳离子两亲性药物很容易与酸性磷脂结合,但与中性磷脂的结合则少得多。药物-脂质复合物的形成被认为是参与抑制溶酶体磷脂酶的一个重要机制。因此,我们使用一种酸性和两种中性磷脂底物研究了四种阳离子两亲性抑制剂对溶酶体磷脂酶A的影响。当以磷脂酰肌醇作为底物时,产生50%抑制所需的药物浓度要高得多。这些药物对磷脂酰乙醇胺和磷脂酰胆碱降解的抑制作用比对磷脂酰肌醇的抑制作用更容易。在药物诱导的脂质osis中,酸性磷脂的优势可能是由于磷脂代谢转向酸性磷脂的形成,从而导致这些脂质向溶酶体的递送增加。根据我们的结果,这似乎不是由于药物-酸性磷脂复合物的酶促水解减少,至少在使用纯磷脂底物时是这样。鉴于这些药物在溶酶体内可能的高浓度,酸性和中性磷脂在溶酶体中的储存似乎是由溶酶体磷脂酶作用的抑制引起的。