An ubiquitin-binding molecule can work as an inhibitor of ubiquitin processing enzymes and ubiquitin receptors

T Nguyen, M Ho, A Ghosh, T Kim, SI Yun… - Biochemical and …, 2016 - Elsevier
T Nguyen, M Ho, A Ghosh, T Kim, SI Yun, SS Lee, KK Kim
Biochemical and biophysical research communications, 2016Elsevier
The ubiquitin pathway plays a critical role in regulating diverse biological processes, and its
dysregulation is associated with various diseases. Therefore, it is important to have a tool
that can control the ubiquitin pathway in order to improve understanding of this pathway and
to develop therapeutics against relevant diseases. We found that Chicago Sky Blue 6B
binds directly to the β-groove, a major interacting surface of ubiquitin. Hence, it could
successfully inhibit the enzymatic activity of ubiquitin processing enzymes and the binding of …
Abstract
The ubiquitin pathway plays a critical role in regulating diverse biological processes, and its dysregulation is associated with various diseases. Therefore, it is important to have a tool that can control the ubiquitin pathway in order to improve understanding of this pathway and to develop therapeutics against relevant diseases. We found that Chicago Sky Blue 6B binds directly to the β-groove, a major interacting surface of ubiquitin. Hence, it could successfully inhibit the enzymatic activity of ubiquitin processing enzymes and the binding of ubiquitin to the CXCR4, a cell surface ubiquitin receptor. Furthermore, we demonstrated that this ubiquitin binding chemical could effectively suppress the ubiquitin induced cancer cell migration by blocking ubiquitin-CXCR4 interaction. Current results suggest that ubiquitin binding molecules can be developed as inhibitors of ubiquitin-protein interactions, which will have the value not only in unveiling the biological role of ubiquitin but also in treating related diseases.
Elsevier