Department of Dermatology, Seoul National University Hospital, Seoul 03080, Republic of Korea.
Institute of Human-Environmental Interface Biology, Medical Research Center, Seoul National University, Seoul 03080, Republic of Korea.
Biosci Rep. 2018 Nov 28;38(6). doi: 10.1042/BSR20171641. Print 2018 Dec 21.
N-Glycosylation affects protein functions such as location, stability, and susceptibility to proteases. Desmosomes in keratinocytes are essential to maintain epidermal tissue integrity to protect against environmental insults. However, it is not yet known whether N-glycosylation affects desmosomal functions in primary keratinocytes. Tunicamycin is an inhibitor of N-glycosylation that has been a useful tool in glycobiology. Therefore, we investigated the effect of inhibiting N-glycosylation by tunicamycin treatment on desmosomes in primary keratinocytes. In our experiments, cell-cell adhesive strength was reduced in tunicamycin-treated primary keratinocytes. TEM showed that desmosome formation was impaired by tunicamycin. Desmogleins (Dsgs) 1 and 3, which constitute the core structure of desmosomes, were well transported to the cell-cell borders, but the amount decreased and showed an aberrant distribution at the cell borders in tunicamycin-treated keratinocytes. The stability of both desmoglein proteins was also reduced, and they were degraded through both proteasomal and lysosomal pathways, although inhibiting degradation did not restore the cell-cell adhesion. Finally, tunicamycin induced desmosomal instability, enhancing their disassembly. In conclusion, these results indicate that N-glycosylation is critical to the desmosome complex to maintain cell-cell adhesive strength in primary keratinocytes.
N-糖基化影响蛋白质的功能,如位置、稳定性和对蛋白酶的敏感性。角蛋白细胞中的桥粒对于维持表皮组织的完整性以抵御环境损伤至关重要。然而,目前尚不清楚 N-糖基化是否会影响原代角质形成细胞中的桥粒功能。衣霉素是一种 N-糖基化抑制剂,已成为糖生物学的有用工具。因此,我们研究了衣霉素处理对原代角质形成细胞中桥粒的影响。在我们的实验中,细胞间黏附力在衣霉素处理的原代角质形成细胞中降低。TEM 显示衣霉素处理会损害桥粒的形成。桥粒的核心结构组成蛋白 desmoglein (Dsgs) 1 和 3 很好地运输到细胞-细胞边界,但在衣霉素处理的角质形成细胞中,其数量减少,并在细胞边界呈现异常分布。两种桥粒蛋白的稳定性也降低,它们通过蛋白酶体和溶酶体途径降解,尽管抑制降解并不能恢复细胞间黏附。最后,衣霉素诱导桥粒不稳定,增强其解体。总之,这些结果表明 N-糖基化对于桥粒复合体在原代角质形成细胞中维持细胞间黏附强度至关重要。