首页> 美国卫生研究院文献>Biochemical Journal >SEA (sea-urchin sperm protein enterokinase and agrin)-module cleavage association of fragments and membrane targeting of rat intestinal mucin Muc3.
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SEA (sea-urchin sperm protein enterokinase and agrin)-module cleavage association of fragments and membrane targeting of rat intestinal mucin Muc3.

机译:SEA(海胆精子蛋白肠激酶和凝集素)模块的裂解片段的结合以及大鼠肠粘蛋白Muc3的膜靶向。

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摘要

In a previous study we showed, by transient expression studies in COS-1 cells, that the C-terminal domain of rat intestinal membrane mucin Muc3 was cleaved between glycine and serine within a GSIVV (one-letter) amino acid sequence during its residence in the endoplasmic reticulum. The extracellular domain fragment remained linked to the membrane-associated fragment by non-covalent interactions. The present study demonstrates that cleavage depends not only on the presence of the G/SIVV site (where G/S is the glycine downward arrow serine cleavage site), but also on more distant C-terminal sequences in the SEA (sea-urchin sperm protein, enterokinase and agrin) module. Inhibition of N-glycosylation by tunicamycin treatment of transfected cells did not prevent re-association of fragments, although cleavage was partially impaired, as some of the non-glycosylated, non-cleaved products were seen to accumulate in cells. Membrane targeting of the Muc3 domain and its cleavage products occurred in transfected cells and was not impaired in mutants in which the cleavage site was mutated. Targeting was also not impaired for products devoid of N-linked oligosaccharides. Our studies thus indicate that (a) cleavage within the SEA module of rat Muc3 requires participation of peptide sequences located C-terminal of and distant from the cleavage site, (b) re-association of the fragments requires the SEA module, but is independent of N-linked oligosaccharides, and (c) membrane targeting of the mucin is independent of the SEA-module-cleavage reaction.
机译:在先前的研究中,我们通过在COS-1细胞中进行瞬时表达研究表明,大鼠肠膜粘蛋白Muc3的C末端结构域在GSIVV(一个字母)氨基酸序列中的甘氨酸和丝氨酸之间裂解,位于其居中。内质网细胞外结构域片段通过非共价相互作用保持与膜相关片段的连接。本研究表明,裂解不仅取决于G / SIVV位点的存在(其中G / S是甘氨酸向下箭头的丝氨酸裂解位点),而且还取决于SEA(海胆精子)中更远的C末端序列蛋白,肠激酶和凝集素)模块。通过衣霉素处理的N-糖基化抑制转染细胞并不能阻止片段的重新结合,尽管切割被部分削弱了,因为一些未糖基化的,未切割的产物会在细胞中积累。 Muc3域及其切割产物的膜靶向发生在转染的细胞中,并且在切割位点发生突变的突变体中没有受到损害。不含N-连接寡糖的产品的靶向性也没有受到损害。因此,我们的研究表明(a)大鼠Muc3的SEA模块内的裂解需要参与位于裂解位点C端并远离该裂解位点的肽序列的参与;(b)片段的重新结合需要SEA模块,但是独立的N-连接的寡糖,和(c)粘蛋白的膜靶向独立于SEA-模块裂解反应。

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