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人单核细胞特异性酯酶(MSE)的纯化:分子与动力学特性

Purification of human monocyte-specific esterase (MSE): molecular and kinetic characteristics.

作者信息

Scott C S, Patel D, Keen J N

机构信息

Yorkshire Leukaemia Diagnostic Unit, Department of Haematology, Cookridge Hospital, Leeds.

出版信息

Br J Haematol. 1992 Aug;81(4):470-9. doi: 10.1111/j.1365-2141.1992.tb02977.x.

Abstract

Human monocyte-specific esterase (MSE) derived from leukaemic AMoL-M5 blast cells was purified to homogeneity by the sequential application of anion-exchange, hydrophobic interaction, affinity and gel filtration chromatographic procedures. The resulting enzymatically active MSE primarily existed as an apparent trimer which, under both reducing and non-reducing conditions, dissociated to an inactive 63.4 kD glycoprotein monomer. Electrophoretic studies further confirmed that purified MSE comprised a narrow series of pI (5.5-6.1) forms and one main charge species. Neuraminidase failed to modify observed pI values for individual MSE isoenzymes, and endoglycosidase H treatment revealed that the deglycosylated form of MSE had an apparent molecular weight of 60.1 kD. In support of the known cytochemical characteristics of human MSE, substrate kinetic studies demonstrated that purified enzyme hydrolysed esters of higher acyl chain length (butyrate > propionate > acetate) but did not show peptidase activity. Amino acid sequencing of the MSE N-terminus further revealed that there was almost complete identity with human alveolar macrophage esterase and close similarities with rat and rabbit liver carboxylesterases. These kinetic and molecular studies are particularly important in elucidating the biological and functional role(s) of one of the few haemopoietic cell enzymes that can be considered truly lineage-specific.

摘要

通过依次应用阴离子交换、疏水相互作用、亲和及凝胶过滤色谱法,从白血病急性单核细胞白血病M5原始细胞中纯化得到人单核细胞特异性酯酶(MSE),使其达到同质。所得具有酶活性的MSE主要以一种表观三聚体形式存在,在还原和非还原条件下均解离为无活性的63.4 kD糖蛋白单体。电泳研究进一步证实,纯化的MSE包含一系列狭窄的pI(5.5 - 6.1)形式和一种主要电荷种类。神经氨酸酶未能改变各个MSE同工酶观察到的pI值,而内切糖苷酶H处理表明,MSE的去糖基化形式的表观分子量为60.1 kD。为支持人MSE已知的细胞化学特征,底物动力学研究表明,纯化的酶可水解较高酰基链长度的酯(丁酸酯>丙酸酯>乙酸酯),但不显示肽酶活性。MSE N端的氨基酸测序进一步揭示,其与人肺泡巨噬细胞酯酶几乎完全相同,与大鼠和兔肝脏羧酸酯酶密切相似。这些动力学和分子研究对于阐明少数可被视为真正谱系特异性的造血细胞酶之一的生物学和功能作用尤为重要。

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