Currently, numerous PROTAC and molecular glue drugs are undergoing clinical trials, including PC, BC and AML. Most of these drugs use androgen receptor (AR), estrogen receptor 1 (ESR1) and G1 to S phase transition 1 (GSPT1) as POI in PC, BC and AML, respectively. As the percentage of E3
+POI
+ cancer cells in POI
+ cancer cells was less than 50% for the listed PROTAC or molecular glue drugs in clinical trials, evidenced by our bioinformatics analysis (Supporting Information Table S1), we endeavored to identify an alternative E3 that is expressed in the majority of POI
+ cancer cells. First, we assessed the E3 sourced from clinical drugs, PROTAC experimental data or the most promising E3s identified by Liu et al.
3 and Kannt et al.
4. Our findings revealed that the percentage of
SH3RF1+AR+ cancer cells in
AR+ cancer cells was 74.56%, much higher than the known E3
+AR+ used in clinical trials, such as
CRBN+AR+ and
VHL+AR+ (
Fig. 1A and Supporting Information Fig. S1). SH3 domain-containing ring finger 1 (SH3RF1) is a protein that is part of the SH3RF family, known for containing SH3 domains and a RING finger domain. The RING finger domain in SH3RF1 suggests it can function as an E3 ubiquitin ligase. The RING domain typically mediates the interaction with E2 enzymes and facilitates the transfer of ubiquitin to target proteins. SH3RF1 functions as a negative post-translational regulator of atypical calmodulin 1 (FAT1), which is indispensable for the regulation of cell proliferation
5. SH3RF1 exhibits the ligandability of E3
3 and facilitates K63-linked ubiquitination of SHVV P at the K264 site
6, suggesting SH3RF1 functions as an E3 ubiquitin ligase. In our analysis, we found in addition to SH3RF1, X-linked inhibitor of apoptosis (XIAP), CCR4–NOT transcription complex subunit 4 (CNOT4), DDB1, baculoviral IAP repeat containing 2 (BIRC2), tripartite motif containing 24 (TRIM24), ring finger protein 114 (RNF114), and helicase like transcription factor (HLTF) are highly expressed in
AR+PC cells, with double-positive rates exceeding 50%. Notably, drugs using XIAP, DDB1, BIRC2, and RNF114 as E3 ligases are already under development. For example, PROTAC drugs that recruit XIAP E3 ligase have been demonstrated to effectively degrade B-cell lymphoma-extra (BCL-X) in the malignant T-cell lymphoma cell line MyLa 1929
7. (
R)-CR8 is a cell cycle protein-dependent kinase (CDK) inhibitor that acts as a molecular glue-degrading compound. The CDK-bound form of CR8 has a solvent-exposed pyridyl portion that induces the formation of a complex between CDK12–cyclin K and the cullin4 (CUL4) adaptor protein, DDB1. This complex bypasses the need for a substrate receptor and presents cell cycle protein K for ubiquitylation and degradation. The PROTAC was also developed with the objective of targeting bromodomain containing 4 (BRD4) and by targeting DDB1. The AR PROTAC was shown to degrade the AR protein in prostate cancer cells
8. The synthesized covalent ligand EN219, which targets RNF114 and mimics the mode of action of the natural productnimbolide, has been observed to degrade novel substrate proteins in an RNF114-dependent manner, to degrade therapeutically relevant targets, and to demonstrate the most potent BRD4 degradation in 231MFP breast cancer cells, and a strong BCR-ABL degradation in K562 leukemia cells
9. The objective of the design and synthesis of an inducer of CRABPs degradation was to utilize the ubiquitin E3 ligase activity of BIRC2. The compound has been demonstrated to inhibit the migration of neuroblastoma IMR-32 cells in cellular systems
10.