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钙与钙网蛋白的体外凝集素及伴侣活性之间的相互作用。

The interplay between calcium and the in vitro lectin and chaperone activities of calreticulin.

作者信息

Conte Ianina L, Keith Natasha, Gutiérrez-Gonzalez Clara, Parodi Armando J, Caramelo Julio J

机构信息

Laboratory of Glycobiology, Fundación Instituto Leloir, Av. Patricias Argentinas 435, Buenos Aires C1405BWE, Argentina.

出版信息

Biochemistry. 2007 Apr 17;46(15):4671-80. doi: 10.1021/bi6026456. Epub 2007 Mar 27.

Abstract

The ER resident protein calreticulin fulfills at least two important roles. It works as a chaperone preventing Golgi exit of non-native protein species and enhancing protein folding efficiency in either N-glycan-dependent, lectin chaperone, or classical chaperone, N-glycan-independent, modes and is one of the main calcium buffers in the cell. This last feature is independent from the lectin chaperone properties of the protein as this last activity is also observed in a CRT fragment lacking calcium buffer capacity. Here we study the interplay between calcium and the lectin and chaperone activities of CRT. The affinity of CRT for monoglucosylated glycans measured in solution by equilibrium dialysis and fluorescence anisotropy was not affected by the absence of calcium. Binding of CRT to monoglucosylated neoglycoproteins displaying either native or molten globule-like conformations was also independent of calcium concentration. Moreover, calcium and monoglucosylated glycans stabilized the CRT structure in an apparent additive, independent manner when the protein was subjected to thermal or urea-induced denaturation. In addition, the ability of CRT to decrease the level of aggregation of a chemically denatured monoglucosylated and nonglycosylated protein was also independent of calcium level.

摘要

内质网驻留蛋白钙网蛋白至少发挥两种重要作用。它作为伴侣蛋白,可防止非天然蛋白种类从高尔基体输出,并通过N - 聚糖依赖性凝集素伴侣模式或经典伴侣模式(N - 聚糖非依赖性)提高蛋白质折叠效率,且是细胞中主要的钙缓冲蛋白之一。蛋白质的这一最后特性与该蛋白的凝集素伴侣特性无关,因为在缺乏钙缓冲能力的钙网蛋白片段中也观察到了这一最后活性。在此,我们研究钙与钙网蛋白的凝集素和伴侣活性之间的相互作用。通过平衡透析和荧光各向异性在溶液中测量的钙网蛋白对单葡萄糖基化聚糖的亲和力不受钙缺失的影响。钙网蛋白与呈现天然或熔球样构象的单葡萄糖基化新糖蛋白的结合也与钙浓度无关。此外,当蛋白质受到热或尿素诱导的变性时,钙和单葡萄糖基化聚糖以明显相加、独立的方式稳定钙网蛋白结构。此外,钙网蛋白降低化学变性的单葡萄糖基化和非糖基化蛋白质聚集水平的能力也与钙水平无关。

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