Glycogen Synthase Kinase-3β Regulates Cellular Prion Protein Levels
The normal cellular prion protein (PrPC) is an essential substrate in all forms of prion diseases and a receptor for Aβ oligomers in Alzheimer’s disease. However, it is not fully understood how cells regulate PrPC levels. Recently, we identified glycogen synthase kinase-3β (GSK-3β) as a potential regulator of PrPC levels in a whole genome knockout screen. Here, we show that both cell surface and total PrPC levels can be reduced either by siRNA-mediated Gsk3b (but not Gsk3a) knockdown or by CRISPR-mediated Gs3b knockout. Whole cell mass spectrometric analysis showed that PrPC was the 60th most significantly reduced protein (out of 7227 total proteins detected) in Gsk3b knockout cells, compared to wild-type cells. Two different GSK-3 inhibitors, laduviglusib (CHIR-99021) and AZD-1080, reduced PrPC levels in mouse CAD5 and human BE(2)-C cells, both in undifferentiated and differentiated states. PrPC levels were similarly reduced by cycloheximide treatment in both Gsk3b knockout and WT cells, indicating that GSK-3β regulates PrPC levels through a post-translational mechanism. Finally, treatment with either laduviglusib or AZD-1080 reduced PrPSc levels in CAD5 cells infected with three different rodent prion strains. Overall, the results reveal that GSK-3β activity controls PrPC levels in living cells, revealing a novel regulatory mechanism and promising therapeutic target.