Suppr超能文献

N-连接聚糖在刺桐凝集素解折叠途径中的作用。

Role of N-linked glycan in the unfolding pathway of Erythrina corallodendron lectin.

作者信息

Mitra Nivedita, Sharon Nathan, Surolia Avadhesha

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.

出版信息

Biochemistry. 2003 Oct 28;42(42):12208-16. doi: 10.1021/bi035169e.

Abstract

Erythrina corallodendron lectin (ECorL) exhibits an exquisitely structured oligosaccharide chain. Interestingly, the bacterially expressed, nonglycosylated counterpart, rECorL, possesses an essentially identical carbohydrate specificity and agglutinating activity as the glycosylated lectin, thus suggesting that the overall structure of the two are identical. This paper reports the unfolding behavior of E. corallodendron lectin in its glycosylated (EcorL) and nonglycosylated (rECorL) forms. ECorL shows a two-state unfolding pattern during isothermal melts and differential scanning calorimetry (DSC). The T(g) of ECorL as obtained from isothermal melts is 74 degrees C at pH 7.4. The T(p) obtained from DSC studies is between 74.8 to 68.1 degrees C in the pH range of 5.26-7.77. The recombinant lectin (rECorL), which is devoid of carbohydrate, shows, in contrast to the glycosylated protein, a non-two-state unfolding profile as measured by both probes mentioned, but the number of intermediates during unfolding could not be ascertained. Simulated annealing on ECorL, with the sugars removed, reveals that the protein Calpha backbones overlap, indicating that the overall structure, including the mode of dimerization, of rECorL is insignificantly altered as compared to ECorL. The alterations in the folding behavior of rECorL as compared to that observed in ECorL may be due to the fact that, unlike most other glycoproteins, one of the glycans in ECorL is unusually structured and forms many hydrogen bonds with the protein. It therefore appears that while the covalently linked sugar does not contribute appreciably to the final folded structure of ECorL, it does alter its folding process in a significant manner.

摘要

刺桐凝集素(ECorL)呈现出结构精妙的寡糖链。有趣的是,细菌表达的非糖基化对应物rECorL与糖基化凝集素具有基本相同的碳水化合物特异性和凝集活性,这表明两者的整体结构相同。本文报道了刺桐凝集素糖基化形式(EcorL)和非糖基化形式(rECorL)的去折叠行为。在等温熔解和差示扫描量热法(DSC)过程中,ECorL呈现出两态去折叠模式。在pH 7.4条件下,通过等温熔解获得的ECorL的T(g)为74℃。在pH范围为5.26 - 7.77时,通过DSC研究获得的T(p)在74.8至68.1℃之间。与糖基化蛋白相反,不含碳水化合物的重组凝集素(rECorL)通过上述两种探针测量显示出非两态去折叠曲线,但去折叠过程中的中间体数量无法确定。去除糖后对ECorL进行模拟退火,结果显示蛋白质的α-碳骨架重叠,这表明与ECorL相比,rECorL的整体结构(包括二聚化模式)变化不大。与ECorL相比,rECorL折叠行为的改变可能是由于以下事实:与大多数其他糖蛋白不同,ECorL中的一种聚糖结构异常,与蛋白质形成许多氢键。因此,虽然共价连接的糖对ECorL的最终折叠结构贡献不大,但它确实以显著方式改变了其折叠过程。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验