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与大鼠肠黏膜相关的转铁蛋白的特性

Properties of the transferrin associated with rat intestinal mucosa.

作者信息

Purves L R, Purves M, Linton N, Brandt W, Johnson G, Jacobs P

机构信息

Department of Chemical Pathology, University of Cape Town Medical School, Republic of South Africa.

出版信息

Biochim Biophys Acta. 1988 Sep 8;966(3):318-27. doi: 10.1016/0304-4165(88)90081-5.

Abstract

The transferrin that is isolated from washed intestinal mucosal cell preparations consists partly of a fraction that has properties distinguishing it from serum transferrin. The serum transferrin contaminating mucosal preparations, even when fully saturated with iron and in the presence of proteinase inhibitors, also acquires the properties of the mucosal transferrin when the mucosa is homogenised. The mucosal transferrin is modified by a single cleavage of the polypeptide chain yielding a disulphide-linked peptide of 6550 daltons linked to the parent protein by a disulphide bridge. The amino-terminal sequence of the first 11 residues of this peptide could be aligned with both the known rat and human transferrin carboxy-terminal sequences. In both cases the sequence is preceded by a phenylalanine residue (residue 622 of human transferrin). This suggested that a mucosal chymotryptic enzyme was responsible even though rat transferrin is not susceptible to alpha-chymotrypsin if fully iron-saturated. Since transferrin mRNA is not found in the intestinal mucosa it must be imported from the serum. It remains uncertain whether the modified transferrin is present naturally and plays a role in iron absorption but these findings do indicate the eventual fate of any transferrin imported into an intestinal cell.

摘要

从洗涤过的肠黏膜细胞制剂中分离出的转铁蛋白部分由一种具有与血清转铁蛋白不同特性的组分组成。即使在完全被铁饱和且存在蛋白酶抑制剂的情况下,污染黏膜制剂的血清转铁蛋白在黏膜匀浆时也会获得黏膜转铁蛋白的特性。黏膜转铁蛋白通过多肽链的单次切割而被修饰,产生一个6550道尔顿的二硫键连接的肽段,该肽段通过二硫键与母体蛋白相连。该肽段前11个残基的氨基末端序列可与已知的大鼠和人类转铁蛋白羧基末端序列比对。在这两种情况下,该序列之前都有一个苯丙氨酸残基(人类转铁蛋白的第622位残基)。这表明即使大鼠转铁蛋白在完全铁饱和时对α-胰凝乳蛋白酶不敏感,一种黏膜胰凝乳蛋白酶仍对此负责。由于在肠黏膜中未发现转铁蛋白mRNA,它必定是从血清中导入的。尚不确定修饰后的转铁蛋白是否天然存在并在铁吸收中起作用,但这些发现确实表明了任何导入肠细胞的转铁蛋白的最终命运。

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