Monahan R A, Dvorak H F, Dvorak A M
Blood. 1981 Dec;58(6):1089-99.
Using either hexazotized pararosaniline or new fuchsin as coupling agents, we investigated the ultrastructural localization of alpha-naphthyl acetate esterase (ANAE) activity in guinea pig bone marrow and peritoneal exudates, and in human peripheral blood cells. DFP-inhibitable ANAE activity was present on the cell surface of lymphocytes, monocytes, macrophages, neutrophils, eosinophils, basophils, megakaryocytes, platelets, and blasts. Demarcation lines in megakaryocytes and the perinuclear cisternae in normoblasts were also positive. In addition, lymphocytes, monocytes, and macrophages displayed ANAE activity associated with cytoplasmic-vesicle clusters (CVC). Reaction product was always present on the cytoplasmic surfaces of these vesicles and in the adjacent cytoplasm; vesicle interiors were invariably ANAE-negative. Small lymphocytes generally had a single large paranuclear ANAE-positive CVC, whereas mononuclear phagocytes had multiple discrete foci of similar appearing ANAE-positive CVC that sometime became confluent. ANAE activity was also found in the Gall bodies of human lymphocytes and in coated vesicles of macrophages. Cytoplasmic ANAE activity was increased in oil-induced guinea pig peritoneal macrophages. Both surface and cytoplasmic esterase activities had a neutral pH optimum. An identical distribution of reaction product was observed when alpha-naphthyl butyrate was employed as substrate. The function of these esterases, and their relation to known surface and cytoplasmic neutral proteases, awaits further investigation.
我们使用重氮对玫瑰苯胺或新品红作为偶联剂,研究了豚鼠骨髓和腹腔渗出液以及人类外周血细胞中α-萘乙酸酯酶(ANAE)活性的超微结构定位。DFP 可抑制的 ANAE 活性存在于淋巴细胞、单核细胞、巨噬细胞、中性粒细胞、嗜酸性粒细胞、嗜碱性粒细胞、巨核细胞、血小板和成血细胞的细胞表面。巨核细胞中的分界线以及正成红细胞中的核周池也呈阳性。此外,淋巴细胞、单核细胞和巨噬细胞表现出与细胞质囊泡簇(CVC)相关的 ANAE 活性。反应产物总是出现在这些囊泡的细胞质表面和相邻的细胞质中;囊泡内部始终为 ANAE 阴性。小淋巴细胞通常有一个单个的大核旁 ANAE 阳性 CVC,而单核吞噬细胞有多个离散的类似 ANAE 阳性 CVC 的病灶,有时会融合。在人类淋巴细胞的高尔基体和巨噬细胞的被膜小泡中也发现了 ANAE 活性。油诱导的豚鼠腹腔巨噬细胞中细胞质 ANAE 活性增加。表面和细胞质酯酶活性的最适 pH 均为中性。当使用α-萘丁酸作为底物时,观察到相同的反应产物分布。这些酯酶的功能及其与已知表面和细胞质中性蛋白酶的关系有待进一步研究。