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人类精子磷脂酶A2的特性及抑制剂敏感性:反对磷脂酶A2在顶体反应中起关键作用的证据。

Characterization and inhibitor sensitivity of human sperm phospholipase A2: evidence against pivotal involvement of phospholipase A2 in the acrosome reaction.

作者信息

Anderson R A, Johnson S K, Bielfeld P, Feathergill K A, Zaneveld L J

机构信息

Department of Obstetrics and Gynecology, Rush-Presbyterian-St. Luke's Medical Center, Chicago, Illinois.

出版信息

Mol Reprod Dev. 1990 Dec;27(4):305-25. doi: 10.1002/mrd.1080270405.

Abstract

The kinetic properties and inhibitor sensitivity of human sperm phospholipase A2 (PLA2; EC 3.1.1.4) were studied. Phospholipase activity was isolated from human spermatozoa by acid extraction. Hydrolysis of dipalmitoyl phosphatidylcholine was specific to the sn-2 position. Activity was sensitive to product inhibition (60% inhibition by 0.1 mM lysophosphatidylcholine). The effects of Ca2+ and sodium deoxycholate on enzyme activity were biphasic; maximal activities were observed at 0.5 mM concentration of each agent. PLA2 was stimulated (135%) by 3% dimethylsulfoxide and was inhibited by elevated ionic strength (approximately 70% inhibition with either 0.2 M NaCl or 0.2 M KCl). Two molecular forms of PLA2 were kinetically distinguishable, one with an apparent Michaelis constant and maximal reaction velocity of 3.0 microM and 0.64 mlU/mg protein and the other with respective constants of 630 microM and 32.0 mlU/mg protein. Both forms of the enzyme were Ca2+ dependent and heat stable; however, the low-Km activity was less resistant to 60 degrees C preincubation at pH 7.5 (28% inactivation of low-Km activity after 45 min, as compared to no effect on high-Km activity). Quinacrine was a noncompetitive PLA2 inhibitor with Kis for low- and high-Km activities of 0.42 mM and 0.49 mM, respectively. Trifluoperazine (calmodulin antagonist) inhibited the high-Km activity noncompetitively (Ki = 87 microM) and the low-Km activity by a mechanism consistent with the removal of a nonessential activator. Dissociation and rate constants for inactivation of low- and high-Km activities by p-bromophenacyl bromide were 0.28 mM and 0.032 min-1, and 0.73 mM and 0.066 min-1, respectively. PLA2 was inhibited by p-nitrophenyl-p'-guanidinobenzoate, at higher concentrations (10(-4)-10(-3) M) than required to inhibit trypsinlike proteinases; p-aminobenzamidine, another potent trypsin/acrosin inhibitor, stimulated (approximately 40%) PLA2 at concentrations from 2-5 mM but inhibited PLA2 (40-50%) at a concentration of 10 mM. MnCl2 (5mM) inhibited low- and high-Km PLA2 activities by 77% and 76%, respectively. Quinacrine (0.4 mM), trifluoperazine (20 microM), p-bromophenacyl bromide (20 microM), and MnCl2 (5 mM) were tested as inhibitors of the ionophore A23187-induced human acrosome reaction. Inhibition was noted only with quinacrine (32%) and MnCl2 (93%). The effect of MnCl2 was restricted to an interaction with A23187, rather than with PLA2; p-Bromophenacyl bromide inhibited (P less than 0.05) PLA2 (29%) when added to intact spermatozoa but had no effect on the acrosome reaction. PLA2 inhibition was poorly correlated with the acrosome reaction.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

对人精子磷脂酶A2(PLA2;EC 3.1.1.4)的动力学特性和抑制剂敏感性进行了研究。通过酸提取从人精子中分离出磷脂酶活性。二棕榈酰磷脂酰胆碱的水解对sn-2位具有特异性。活性对产物抑制敏感(0.1 mM溶血磷脂酰胆碱可抑制60%)。Ca2+和脱氧胆酸钠对酶活性的影响呈双相性;在每种试剂浓度为0.5 mM时观察到最大活性。PLA2受到3%二甲亚砜的刺激(增加135%),并受到离子强度升高的抑制(0.2 M NaCl或0.2 M KCl时约70%抑制)。两种分子形式的PLA2在动力学上可区分,一种表观米氏常数和最大反应速度分别为3.0 microM和0.64 mlU/mg蛋白质,另一种相应常数为630 microM和32.0 mlU/mg蛋白质。两种形式的酶均依赖Ca2+且热稳定;然而,低Km活性对pH 7.5下60℃预孵育的耐受性较差(45分钟后低Km活性失活28%,而高Km活性无影响)。喹吖因是一种非竞争性PLA2抑制剂,对低Km和高Km活性的抑制常数分别为0.42 mM和0.49 mM。三氟拉嗪(钙调蛋白拮抗剂)非竞争性抑制高Km活性(Ki = 87 microM),对低Km活性的抑制机制与去除一种非必需激活剂一致。对溴苯甲酰溴使低Km和高Km活性失活的解离常数和速率常数分别为0.28 mM和0.032 min-1,以及0.73 mM和0.066 min-1。PLA2受到对硝基苯基-p'-胍基苯甲酸酯的抑制,其浓度高于抑制类胰蛋白酶所需浓度(10(-4)-10(-3) M);另一种有效的胰蛋白酶/顶体蛋白酶抑制剂对氨基苯甲脒在2-5 mM浓度时刺激PLA2(约40%),但在10 mM浓度时抑制PLA2(40-50%)。MnCl2(5 mM)分别抑制低Km和高Km的PLA2活性77%和76%。测试了喹吖因(0.4 mM)、三氟拉嗪(20 microM)、对溴苯甲酰溴(20 microM)和MnCl2(5 mM)作为离子载体A23187诱导的人顶体反应的抑制剂。仅观察到喹吖因(32%)和MnCl2(93%)有抑制作用。MnCl2的作用仅限于与A23187相互作用,而非与PLA2;对溴苯甲酰溴添加到完整精子中时抑制(P < 0.05)PLA2(29%),但对顶体反应无影响。PLA2抑制与顶体反应的相关性较差。(摘要截断于400字)

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