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人黏液蛋白酶抑制剂与痰液中高度糖基化大分子紧密结合的证据。

Evidence for the tight binding of human mucus proteinase inhibitor to highly glycosylated macromolecules in sputum.

作者信息

Van-Seuningen I, Davril M, Hayem A

机构信息

Unité INSERM No. 16, Lille, France.

出版信息

Biol Chem Hoppe Seyler. 1989 Jul;370(7):749-55. doi: 10.1515/bchm3.1989.370.2.749.

Abstract

Two extraction procedures of non-purulent sputum for the isolation of human mucus proteinase inhibitor (MPI) in its free and bound forms have been assayed. The dissociating procedure involved sputum homogenization in 1M NaCl and 4% (w/v) trichloroacetic treatment. When the soluble material was applied to a CM-Trisacryl column, a non-negligible, MPI-related inhibitory activity was recovered with the highly glycosylated constituents not retained on the column; the amount of MPI released in a free form was retained and eluted from the column according to the basic character of this inhibitor. The non-dissociating procedure consisted in a high water dilution (1:12) of sputum, known to bring into solution the macromolecular, fibrillar constituents, which was followed by ultrafiltration on selected Mr cut-off membranes. All the inhibitory activity was recovered with the high Mr (greater than 100,000) fraction which was shown on SDS-PAGE to be essentially composed of strongly glycosylated material; on electrophoretic analysis under non-reducing conditions, the MPI activity was visualized as three bands which corresponded to the inhibitor released from this high Mr fraction in the presence of SDS. As mucin-type molecules are the major, highly glycosylated constituents of bronchial secretions, it is suggested that they are responsible for the entrapping of MPI within their macromolecular network; it would appear that, as well as for lysozyme, electrostatic interactions occur between the acid charges of mucins and the basic charges of MPI. The possible in vivo consequences of these interactions on MPI activity are discussed.

摘要

已对两种用于分离游离和结合形式人黏液蛋白酶抑制剂(MPI)的非脓性痰液提取方法进行了测定。解离方法包括在1M氯化钠中对痰液进行匀浆,并进行4%(w/v)三氯乙酸处理。当将可溶性物质应用于CM - Trisacryl柱时,与高度糖基化成分一起回收了不可忽略的、与MPI相关的抑制活性,这些成分未保留在柱上;以游离形式释放的MPI量根据该抑制剂的碱性特征被保留并从柱上洗脱。非解离方法包括对痰液进行高倍水稀释(1:12),已知这种稀释会使大分子纤维成分溶解,随后在选定的截留分子量膜上进行超滤。所有抑制活性都与高分子量(大于100,000)部分一起回收,在SDS - PAGE上显示该部分主要由高度糖基化物质组成;在非还原条件下进行电泳分析时,MPI活性表现为三条带,这三条带对应于在SDS存在下从该高分子量部分释放的抑制剂。由于黏蛋白型分子是支气管分泌物的主要高度糖基化成分,因此表明它们负责将MPI截留在其大分子网络中;似乎与溶菌酶一样,黏蛋白的酸性电荷与MPI的碱性电荷之间发生了静电相互作用。讨论了这些相互作用对MPI活性可能的体内影响。

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