Carlson College of Veterinary Medicine, Oregon State University, Corvallis, OR 97331, USA.
Cells. 2021 Apr 9;10(4):854. doi: 10.3390/cells10040854.
While the role of ubiquitin in protein degradation is well established, the role of other ubiquitin-like proteins (UBLs) in protein degradation is less clear. Neural precursor cell expressed developmentally down-regulated protein 8 (NEDD8) is the UBL with the highest level of amino acids identified when compared to ubiquitin. Here we tested if the N-terminal addition of NEDD8 to a protein of interest could lead to degradation. Mutation of critical glycine residues required for normal NEDD8 processing resulted in a non-cleavable fusion protein that was rapidly degraded within the cells by both the proteasome and autophagy. Both degradation pathways were dependent on a functional ubiquitin-conjugation system as treatment with MLN7243 increased levels of non-cleavable NEDD8-GFP. The degradation of non-cleavable, N-terminal NEDD8-GFP was not due to a failure of GFP folding as different NEDD8-GFP constructs with differing abilities to fold and fluoresce were similarly degraded. Though the fusion of NEDD8 to a protein resulted in degradation, treatment of cells with MLN4924, an inhibitor of the E1 activating enzyme for NEDD8, failed to prevent degradation of other destabilized substrates. Taken together these data suggest that under certain conditions, such as the model system described here, the covalent linkage of NEDD8 to a protein substrate may result in the target proteins degradation.
虽然泛素在蛋白质降解中的作用已经得到充分证实,但其他泛素样蛋白 (UBLs) 在蛋白质降解中的作用尚不清楚。神经前体细胞表达的发育下调蛋白 8 (NEDD8) 是与泛素相比氨基酸水平最高的 UBL。在这里,我们测试了是否可以通过将 NEDD8 添加到感兴趣的蛋白质的 N 端来导致其降解。对正常 NEDD8 加工所需的关键甘氨酸残基进行突变会导致不可切割的融合蛋白在细胞内被蛋白酶体和自噬迅速降解。这两种降解途径都依赖于功能性泛素缀合系统,因为用 MLN7243 处理会增加不可切割的 NEDD8-GFP 的水平。不可切割的 N 端 NEDD8-GFP 的降解不是由于 GFP 折叠失败,因为具有不同折叠和荧光能力的不同 NEDD8-GFP 构建体也被类似地降解。尽管 NEDD8 与蛋白质融合导致降解,但用 MLN4924 处理细胞(一种 NEDD8 的 E1 激活酶抑制剂)并不能阻止其他不稳定化底物的降解。总之,这些数据表明,在某些条件下,例如这里描述的模型系统,NEDD8 与蛋白质底物的共价连接可能导致靶蛋白的降解。