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马初乳中β-乳球蛋白II的氨基酸序列(马,奇蹄目):β-乳球蛋白是视黄醇结合蛋白。

The amino-acid sequence of beta-lactoglobulin II from horse colostrum (Equus caballus, Perissodactyla): beta-lactoglobulins are retinol-binding proteins.

作者信息

Godovac-Zimmermann J, Conti A, Liberatori J, Braunitzer G

出版信息

Biol Chem Hoppe Seyler. 1985 Jun;366(6):601-8. doi: 10.1515/bchm3.1985.366.1.601.

Abstract

beta-Lactoglobulin isolated from horse colostrum is heterogeneous and contains two components: beta-lactoglobulin I and beta-lactoglobulin II. These two proteins are monomeric and show differences in their electrophoretic mobilities, chain lengths and primary structures. The complete amino-acid sequence of beta-lactoglobulin II was determined by automated Edman degradation of the intact protein and of the peptides derived from these by digestion with trypsin or chymotrypsin and by chemical cleavage with cyanogen bromide. Unlike other beta-lactoglobulins which contain 162 amino acids, horse beta-lactoglobulin II is unique in that it contains 166 amino acids. The additional four amino acids represent an insertion between positions 116 and 117 of other beta-lactoglobulins so far sequenced, including horse beta-lactoglobulin I. Sequence comparison of beta-lactoglobulins I and II from horse colostrum reveals 48 amino acid substitutions (30%). Such a diversity between members of the beta-lactoglobulin gene family has not been encountered before. Sequence comparison with bovine beta-lactoglobulin A shows 85 amino acid replacements accounting for 53% of the residues. The structural homology with human retinol-binding protein may reveal similar biological functions and clues to the origin of milk proteins.

摘要

从马初乳中分离出的β-乳球蛋白具有异质性,包含两种成分:β-乳球蛋白I和β-乳球蛋白II。这两种蛋白质均为单体,在电泳迁移率、链长和一级结构上存在差异。β-乳球蛋白II的完整氨基酸序列是通过对完整蛋白质以及用胰蛋白酶或糜蛋白酶消化后得到的肽段,以及用溴化氰进行化学裂解得到的肽段进行自动Edman降解来确定的。与其他含有162个氨基酸的β-乳球蛋白不同,马β-乳球蛋白II的独特之处在于它含有166个氨基酸。额外的四个氨基酸代表在迄今为止已测序的其他β-乳球蛋白(包括马β-乳球蛋白I)的第116和117位之间的插入。马初乳中β-乳球蛋白I和II的序列比较显示有48个氨基酸替换(30%)。β-乳球蛋白基因家族成员之间如此大的差异此前尚未见过。与牛β-乳球蛋白A的序列比较显示有85个氨基酸替换,占残基的53%。与人类视黄醇结合蛋白的结构同源性可能揭示相似的生物学功能以及乳蛋白起源的线索。

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