Yoshida Yukiko, Adachi Eru, Fukiya Kanako, Iwai Kazuhiro, Tanaka Keiji
Tokyo Metropolitan Institute of Medical Science, 3-18-22, Hon-komagome, Bunkyo-ku, Tokyo 113-8613, Japan.
EMBO Rep. 2005 Mar;6(3):239-44. doi: 10.1038/sj.embor.7400351.
Misfolded or unassembled polypeptides in the endoplasmic reticulum (ER) are retro-translocated into the cytosol and degraded by the ubiquitin-proteasome system. We reported previously that the SCF(Fbs1,2) ubiquitin-ligase complexes that contribute to ubiquitination of glycoproteins are involved in the ER-associated degradation pathway. Here we investigated how the SCF(Fbs1,2) complexes interact with unfolded glycoproteins. The SCF(Fbs1) complex was associated with p97/VCP AAA ATPase and bound to integrin-beta1, one of the SCF(Fbs1) substrates, in the cytosol in a manner dependent on p97 ATPase activity. Both Fbs1 and Fbs2 proteins interacted with denatured glycoproteins, which were modified with not only high-mannose but also complex-type oligosaccharides, more efficiently than native proteins. Given that Fbs proteins interact with innermost chitobiose in N-glycans, we propose that Fbs proteins distinguish native from unfolded glycoproteins by sensing the exposed chitobiose structure.
内质网(ER)中错误折叠或未组装的多肽会逆向转运到细胞质中,并由泛素-蛋白酶体系统降解。我们之前报道过,参与糖蛋白泛素化的SCF(Fbs1,2)泛素连接酶复合物参与内质网相关降解途径。在此,我们研究了SCF(Fbs1,2)复合物如何与未折叠的糖蛋白相互作用。SCF(Fbs1)复合物与p97/VCP AAA ATP酶相关联,并以依赖于p97 ATP酶活性的方式在细胞质中与SCF(Fbs1)底物之一整合素β1结合。Fbs1和Fbs2蛋白与变性糖蛋白的相互作用比天然蛋白更有效,这些变性糖蛋白不仅被高甘露糖修饰,还被复合型寡糖修饰。鉴于Fbs蛋白与N-聚糖中最内层的壳二糖相互作用,我们提出Fbs蛋白通过感知暴露的壳二糖结构来区分天然糖蛋白和未折叠糖蛋白。