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在内质网腔普遍存在的条件下,钙连蛋白具有强大的不依赖凝集素的伴侣功能。

Potent lectin-independent chaperone function of calnexin under conditions prevalent within the lumen of the endoplasmic reticulum.

作者信息

Brockmeier Achim, Williams David B

机构信息

Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada M5S 1A8.

出版信息

Biochemistry. 2006 Oct 24;45(42):12906-16. doi: 10.1021/bi0614378.

Abstract

Calnexin is a membrane-bound chaperone of the endoplasmic reticulum (ER) that participates in the folding and quality control of newly synthesized glycoproteins. Binding to glycoproteins occurs through a lectin site with specificity for Glc1Man9GlcNAc2 oligosaccharides as well as through a polypeptide binding site that recognizes non-native protein conformations. The latter interaction is somewhat controversial because it is based on observations that calnexin can suppress the aggregation of non-glycosylated substrates at elevated temperature or at low calcium concentrations, conditions that may affect the structural integrity of calnexin. Here, we examine the ability of calnexin to interact with a non-glycosylated substrate under physiological conditions of the ER lumen. We show that the soluble ER luminal domain of calnexin can indeed suppress the aggregation of non-glycosylated firefly luciferase at 37 degrees C and at the normal resting ER calcium concentration of 0.4 mM. However, gradual reduction of calcium below the resting level was accompanied by a progressive loss of native calnexin structure as assessed by thermal stability, protease sensitivity, intrinsic fluorescence, and bis-ANS binding. These assays permitted the characterization of a single calcium binding site on calnexin with a Kd = 0.15 +/- 0.05 mM. We also show that the suppression of firefly luciferase aggregation by calnexin is strongly enhanced in the presence of millimolar concentrations of ATP and that the Kd for ATP binding to calnexin in the presence of 0.4 mM calcium is 0.7 mM. ATP did not alter the overall stability of calnexin but instead triggered the localized exposure of a hydrophobic site on the chaperone. These findings demonstrate that calnexin is a potent molecular chaperone that is capable of suppressing the aggregation of substrates through polypeptide-based interactions under conditions that exist within the ER lumen.

摘要

钙连蛋白是内质网(ER)的一种膜结合伴侣蛋白,参与新合成糖蛋白的折叠和质量控制。它通过对Glc1Man9GlcNAc2寡糖具有特异性的凝集素位点以及识别非天然蛋白质构象的多肽结合位点与糖蛋白结合。后一种相互作用存在一定争议,因为它基于这样的观察结果:在高温或低钙浓度(可能影响钙连蛋白结构完整性的条件)下,钙连蛋白可以抑制非糖基化底物的聚集。在此,我们研究了钙连蛋白在内质网腔生理条件下与非糖基化底物相互作用的能力。我们发现,钙连蛋白的可溶性内质网腔结构域确实能够在37摄氏度和内质网正常静息钙浓度0.4 mM的条件下抑制非糖基化萤火虫荧光素酶的聚集。然而,随着钙浓度逐渐降低至静息水平以下,通过热稳定性、蛋白酶敏感性、内在荧光和双-ANS结合评估发现,天然钙连蛋白结构逐渐丧失。这些测定方法确定了钙连蛋白上一个Kd = 0.15 +/- 0.05 mM的单一钙结合位点。我们还表明,在存在毫摩尔浓度ATP的情况下,钙连蛋白对萤火虫荧光素酶聚集的抑制作用会大大增强,并且在存在0.4 mM钙的情况下,ATP与钙连蛋白结合的Kd为0.7 mM。ATP并没有改变钙连蛋白的整体稳定性,而是引发了伴侣蛋白上一个疏水位点的局部暴露。这些发现表明,钙连蛋白是一种强大的分子伴侣蛋白,能够在内质网腔内存在的条件下通过基于多肽的相互作用抑制底物的聚集。

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