Miura Kohta, Katsuki Riko, Yoshida Shusei, Ohta Ren, Tamura Taku
Department of Life Science, Graduate School of Engineering Science, Akita University, Akita 010-8502, Japan.
Department of Life Science, Faculty of Engineering Science, Akita University, Akita 010-8502, Japan.
Int J Mol Sci. 2023 Jul 29;24(15):12171. doi: 10.3390/ijms241512171.
Secretory and membrane proteins are vital for cell activities, including intra- and intercellular communication. Therefore, protein quality control in the endoplasmic reticulum (ER) is an essential and crucial process for eukaryotic cells. Endoplasmic reticulum-associated degradation (ERAD) targets misfolded proteins during the protein maturation process in the ER and leads to their disposal. This process maintains the ER productive function and prevents misfolded protein stress (i.e., ER stress). The ERAD-stimulating factor ER degradation-enhancing α mannosidase-like 1 protein (EDEM1) acts on misfolded proteins to accelerate ERAD, thereby maintaining the productivity of the ER. However, the detail mechanism underlying the function of EDEM1 in ERAD is not completely understood due to a lack of established physiological substrate proteins. In this study, we attempted to identify substrate proteins for EDEM1 using siRNA. The matrix component thrombospondin-1 (TSP1) and epidermal growth factor receptor (EGFR) were identified as candidate targets of EDEM1. Their protein maturation status and cellular localization were markedly affected by knockdown of EDEM1. We also showed that EDEM1 physically associates with EGFR and enhances EGFR degradation via ERAD. Our data highlight the physiological role of EDEM1 in maintaining specific target proteins and provide a potential approach to the regulation of expression of clinically important proteins.
分泌蛋白和膜蛋白对于细胞活动至关重要,包括细胞内和细胞间通讯。因此,内质网(ER)中的蛋白质质量控制是真核细胞必不可少且至关重要的过程。内质网相关降解(ERAD)在ER中的蛋白质成熟过程中靶向错误折叠的蛋白质并导致其被清除。这一过程维持了ER的生产功能并防止错误折叠蛋白应激(即ER应激)。ERAD刺激因子内质网降解增强α-甘露糖苷酶样1蛋白(EDEM1)作用于错误折叠的蛋白质以加速ERAD,从而维持ER的生产力。然而,由于缺乏已确定的生理底物蛋白,EDEM1在ERAD中功能的具体机制尚未完全了解。在本研究中,我们试图使用小干扰RNA(siRNA)鉴定EDEM1的底物蛋白。基质成分血小板反应蛋白-1(TSP1)和表皮生长因子受体(EGFR)被鉴定为EDEM1的候选靶标。它们的蛋白质成熟状态和细胞定位受到EDEM1敲低的显著影响。我们还表明,EDEM1与EGFR发生物理结合,并通过ERAD增强EGFR的降解。我们的数据突出了EDEM1在维持特定靶蛋白方面的生理作用,并为调节临床重要蛋白的表达提供了一种潜在方法。