首页> 外文期刊>Glycobiology. >Addition of beta1-6 GlcNAc branching to the oligosaccharide attached to Asn 772 in the serine protease domain of matriptase plays a pivotal role in its stability and resistance against trypsin.
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Addition of beta1-6 GlcNAc branching to the oligosaccharide attached to Asn 772 in the serine protease domain of matriptase plays a pivotal role in its stability and resistance against trypsin.

机译:在分支蛋白的丝氨酸蛋白酶结构域中,向与Asn 772相连的寡糖分支的β1-6GlcNAc分支分子的稳定性及其对胰蛋白酶的抵抗性起着关键作用。

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摘要

beta1-6 GlcNAc branching, a product of N-acetylglucosaminyltransferase V (GnT-V), is a key structure that is associated with malignant transformations and cancer metastasis. Although a number of reports concerning tumor metastasis-related glycoproteins that contain beta1-6 GlcNAc branching have appeared, the precise function of beta1-6 GlcNAc branching on glycoproteins remains to be elucidated. We previously reported on the importance of beta1-6 GlcNAc branching on matriptase in terms of proteolytic degradation in tumor metastasis. We report here that matriptase purified from GnT-V transfectant (beta1-6 GlcNAc matriptase) binds strongly to L4-PHA, which preferentially recognizes beta1-6 GlcNAc branches of tri- or tetraantennary sugar chains, indicating that the isolated matriptase contains beta1-6 GlcNAc branching. The beta1-6 GlcNAc matriptase was resistant to autodegradation, as well as trypsin digestion, compared with matriptase purified from mock-transfected cells. Furthermore, N-glycosidase-F treatment of beta1-6 GlcNAc matriptase greatly reduced its resistance to degradation. An analysis of matriptase mutants that do not contain potential N-glycosylation sites clearly shows that the beta1-6 GlcNAc branching on N-glycans attached to Asn 772 in the serine protease domain plays a major role in trypsin resistance. This is the first example of a demonstration of a direct relationship between beta1-6 GlcNAc branching and a biological function at the protein level.
机译:beta1-6 GlcNAc分支是N-乙酰氨基葡萄糖氨基转移酶V(GnT-V)的产物,是与恶性转化和癌症转移相关的关键结构。尽管已经出现了许多有关包含β1-6GlcNAc分支的肿瘤转移相关糖蛋白的报道,但仍需阐明β1-6GlcNAc分支在糖蛋白上的确切功能。我们先前曾报道过关于在肿瘤转移中的蛋白水解降解方面,matriptase上的β1-6GlcNAc分支的重要性。我们在这里报告说,从GnT-V转染子(beta1-6 GlcNAc matriptase)纯化的苹果酸酶与L4-PHA强烈结合,后者优先识别三天线或四天线糖链的beta1-6 GlcNAc分支,表明分离的苹果酸酶包含β1-6 GlcNAc分支。与从模拟转染的细胞中纯化出的脱脂酶相比,β1-6GlcNAc脱脂酶对自身降解和胰蛋白酶消化具有抵抗力。此外,N-糖苷酶-F处理β1-6GlcNAc脱羧酶的能力大大降低了其抗降解性。对不包含潜在N-糖基化位点的Matriptase突变体的分析清楚地表明,丝氨酸蛋白酶域中与Asn 772相连的N-聚糖上的beta1-6 GlcNAc分支在胰蛋白酶抗性中起主要作用。这是证明β1-6GlcNAc分支与蛋白质水平的生物学功能之间直接关系的第一个例子。

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