首页> 美国卫生研究院文献>The EMBO Journal >Calreticulin functions in vitro as a molecular chaperone for both glycosylated and non-glycosylated proteins.
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Calreticulin functions in vitro as a molecular chaperone for both glycosylated and non-glycosylated proteins.

机译:钙网蛋白在体外充当糖基化和非糖基化蛋白的分子伴侣。

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摘要

Calreticulin (CRT) is thought to be a molecular chaperone that interacts with glycoproteins exclusively through a lectin site specific for monoglucosylated oligosaccharides. However, this chaperone function has never been directly demonstrated nor is it clear how lectin-oligosaccharide interactions facilitate glycoprotein folding. Using purified components, we show that CRT suppresses the aggregation not only of a glycoprotein bearing monoglucosylated oligosaccharides but also that of non-glycosylated proteins. Furthermore, CRT forms stable complexes with unfolded, non-glycosylated substrates but does not associate with native proteins. ATP and Zn(2+) enhance CRT's ability to suppress aggregation of non- glycoproteins, whereas engagement of its lectin site with purified oligosaccharide attenuates this function. CRT also confers protection against thermal inactivation and maintains substrates in a folding-competent state. We conclude that in addition to being a lectin CRT possesses a polypeptide binding capacity capable of discriminating between protein conformational states and that it functions in vitro as a classical molecular chaperone.
机译:钙网蛋白(CRT)被认为是一种分子伴侣,仅通过单糖基化寡糖特异的凝集素位点与糖蛋白相互作用。但是,这种伴侣蛋白的功能尚未得到直接证实,也不清楚凝集素-寡糖的相互作用如何促进糖蛋白折叠。使用纯化的成分,我们表明CRT不仅抑制带有单糖基化寡糖的糖蛋白的聚集,而且还抑制非糖基化蛋白的聚集。此外,CRT与未折叠的非糖基化底物形成稳定的复合物,但不与天然蛋白质缔合。 ATP和Zn(2+)增强了CRT抑制非糖蛋白聚集的能力,而其凝集素位点与纯化的低聚糖的结合减弱了该功能。 CRT还可以防止热失活,并将基材保持在可折叠状态。我们得出的结论是,CRT除了是一种凝集素外,还具有能够区分蛋白质构象状态的多肽结合能力,并且在体外起着经典分子伴侣的作用。

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