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体内突变型Lewis酶的分子行为

Molecular behavior of mutant Lewis enzymes in vivo.

作者信息

Nishihara S, Hiraga T, Ikehara Y, Iwasaki H, Kudo T, Yazawa S, Morozumi K, Suda Y, Narimatsu H

机构信息

Division of Cell Biology, Institute of Life Science, Soka University, 1-236 Tangi-cho, Hachioji, Tokyo 192-8577, Japan.

出版信息

Glycobiology. 1999 Apr;9(4):373-82. doi: 10.1093/glycob/9.4.373.

Abstract

The expression of type-1 Lewis antigens on erythrocytes and in digestive organs is determined by a Lewis type alpha(1,3/1, 4)-fucosyltransferase (Lewis enzyme) encoded by the Fuc-TIII gene ( FUT3 gene; Lewis gene). We have classified the Lewis alleles in the Japanese population into four types, the wild-type allele ( Le ) and three mutated alleles, i.e., le1, which has missense mutations T59G and G508A, le2, which has T59G and T1067A, and le3, which has only T59G. Here we carried out an extensive study on the biological properties of the three mutant Lewis enzymes, the le1, le2, and le3 enzymes, using native tissues and obtained the following results. (1) In in vivo and in vitro experiments, the le1 and le2 enzymes were found to be susceptible to protease digestion probably because the one missense mutation in the catalytic domains, i.e., Gly170 to Ser in the le1 enzyme and Ile356 to Lys in the le2 enzyme, makes the three-dimensional structures of the enzymesunstable, while the le3 and wild-type Lewis enzymes wereresistant to protease digestion. (2) The le1 and le2 enzymes cannot synthesize type 1 Lewis antigens on either glycolipids or mucins. The le3 enzyme cannot synthesize Lewis-active glycolipids, which result in the Lewis antigen-negative phenotype of erythrocytes, while it can synthesize Lewis antigens on mucins in normal and cancerous colon tissues. The missense mutation, Leu20 to Arg, in the transmembrane domain reduces retention of the le3 enzyme in the Golgi membrane resulting in an apparent reduction of enzyme activity as revealed by the lack of Lewis antigen synthesis. (3) The Lewis gene dosage actually has effects in vivo on the amount of the Lewis enzyme, its activity, and finally the amounts of Lewis carbohydrate antigens. This is the first article that clearly demonstrates the gene dosage effects on the amount of the glycosyltransferase protein, its activity, and the amounts of carbohydrate products in vivo.

摘要

红细胞和消化器官中1型Lewis抗原的表达由Fuc-TIII基因(FUT3基因;Lewis基因)编码的Lewis型α(1,3/1,4)-岩藻糖基转移酶(Lewis酶)决定。我们将日本人群中的Lewis等位基因分为四种类型,即野生型等位基因(Le)和三种突变等位基因,分别为:le1,具有错义突变T59G和G508A;le2,具有T59G和T1067A;le3,仅具有T59G。在此,我们利用天然组织对三种突变Lewis酶(le1、le2和le3酶)的生物学特性进行了广泛研究,结果如下:(1)在体内和体外实验中,发现le1和le2酶易受蛋白酶消化,这可能是因为催化结构域中的一个错义突变,即le1酶中的Gly170突变为Ser,le2酶中的Ile356突变为Lys,使酶的三维结构不稳定,而le3和野生型Lewis酶对蛋白酶消化具有抗性。(2)le1和le2酶在糖脂或粘蛋白上均不能合成1型Lewis抗原。le3酶不能合成具有Lewis活性的糖脂,导致红细胞呈现Lewis抗原阴性表型,而它可以在正常和癌性结肠组织的粘蛋白上合成Lewis抗原。跨膜结构域中的错义突变Leu20突变为Arg,降低了le3酶在高尔基膜中的保留,导致酶活性明显降低,这从Lewis抗原合成的缺乏中得以体现。(3)Lewis基因剂量实际上在体内对Lewis酶的量、其活性以及最终Lewis碳水化合物抗原的量都有影响。这是第一篇清楚证明基因剂量对体内糖基转移酶蛋白的量、其活性以及碳水化合物产物的量有影响的文章。

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