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四跨膜蛋白CD151调节α3β1整合素的糖基化。

Tetraspanin CD151 regulates glycosylation of (alpha)3(beta)1 integrin.

作者信息

Baldwin Gouri, Novitskaya Vera, Sadej Rafal, Pochec Ewa, Litynska Anna, Hartmann Christoph, Williams Janelle, Ashman Leonie, Eble Johannes A, Berditchevski Fedor

机构信息

Cancer Research UK Institute for Cancer Studies, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

出版信息

J Biol Chem. 2008 Dec 19;283(51):35445-54. doi: 10.1074/jbc.M806394200. Epub 2008 Oct 13.

DOI:10.1074/jbc.M806394200
PMID:18852263
Abstract

The tetraspanin CD151 forms a stoichiometric complex with integrin alpha3beta1 and regulates its endocytosis. We observed that down-regulation of CD151 in various epithelial cell lines changed glycosylation of alpha3beta1. In contrast, glycosylation of other transmembrane proteins, including those associated with CD151 (e.g. alpha6beta1, CD82, CD63, and emmprin/CD147) was not affected. The detailed analysis has shown that depletion of CD151 resulted in the reduction of Fucalpha1-2Gal and bisecting GlcNAc-beta(1-->4) linkage on N-glycans of the alpha3 integrin subunit. The modulatory activity of CD151 toward alpha3beta1 was specific, because stable knockdown of three other tetraspanins (i.e. CD9, CD63, and CD81) did not affect glycosylation of the integrin. Analysis of alpha3 glycosylation in CD151-depleted breast cancer cells with reconstituted expression of various CD151 mutants has shown that a direct contact with integrin is required but not sufficient for the modulatory activity of the tetraspanin toward alpha3beta1. We also found that glycosylation of CD151 is also critical; Asn(159) --> Gln mutation in the large extracellular loop did not affect interactions of CD151 with other tetraspanins or alpha3beta1 but negated its modulatory function. Changes in the glycosylation pattern of alpha3beta1 observed in CD151-depleted cells correlated with a dramatic decrease in cell migration toward laminin-332. Migration toward fibronectin or static adhesion of cells to extracellular matrix ligands was not affected. Importantly, reconstituted expression of the wild-type CD151 but not glycosylation-deficient mutant restored the migratory potential of the cells. These results demonstrate that CD151 plays an important role in post-translation modification of alpha3beta1 integrin and strongly suggest that changes in integrin glycosylation are critical for the promigratory activity of this tetraspanin.

摘要

四跨膜蛋白CD151与整合素α3β1形成化学计量复合物并调节其胞吞作用。我们观察到,在各种上皮细胞系中下调CD151会改变α3β1的糖基化。相比之下,其他跨膜蛋白的糖基化,包括与CD151相关的那些蛋白(如α6β1、CD82、CD63和癌胚蛋白/CD147)并未受到影响。详细分析表明,CD151的缺失导致α3整合素亚基N-聚糖上Fucα1-2Gal和平分型GlcNAc-β(1→4)连接减少。CD151对α3β1的调节活性具有特异性,因为稳定敲低其他三种四跨膜蛋白(即CD9、CD63和CD81)并不影响整合素的糖基化。对重新表达各种CD151突变体的CD151缺失乳腺癌细胞中α3糖基化的分析表明,四跨膜蛋白对α3β1的调节活性需要与整合素直接接触,但这并不充分。我们还发现CD151的糖基化也很关键;大细胞外环中的Asn(159)→Gln突变不影响CD151与其他四跨膜蛋白或α3β1的相互作用,但使其调节功能丧失。在CD151缺失细胞中观察到的α3β1糖基化模式变化与细胞向层粘连蛋白-332迁移的显著减少相关。向纤连蛋白的迁移或细胞与细胞外基质配体的静态黏附不受影响。重要的是,野生型CD151的重新表达而非糖基化缺陷突变体恢复了细胞的迁移潜力。这些结果表明,CD151在α3β1整合素的翻译后修饰中起重要作用,并强烈表明整合素糖基化的变化对于这种四跨膜蛋白的促迁移活性至关重要。

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