| Literature DB >> 29699578 |
Ting Li1, Hu-Lin Jiang2, Yun-Guang Tong3,4, Jin-Jian Lu5.
Abstract
Heat shock protein 90 (Hsp90) is a critical molecular chaperone protein that regulates the folding, maturation, and stability of a wide variety of proteins. In recent years, the development of Hsp90-directed inhibitors has grown rapidly, and many of these inhibitors have entered clinical trials. In parallel, the functional dissection of the Hsp90 chaperone machinery has highlighted the activity disruption of Hsp90 co-chaperone as a potential target. With the roles of Hsp90 co-chaperones being elucidated, cell division cycle 37 (Cdc37), a ubiquitous co-chaperone of Hsp90 that directs the selective client proteins into the Hsp90 chaperone cycle, shows great promise. Moreover, the Hsp90-Cdc37-client interaction contributes to the regulation of cellular response and cellular growth and is more essential to tumor tissues than normal tissues. Herein, we discuss the current understanding of the clients of Hsp90-Cdc37, the interaction of Hsp90-Cdc37-client protein, and the therapeutic possibilities of targeting Hsp90-Cdc37-client protein interaction as a strategy to inhibit Hsp90 chaperone machinery to present new insights on alternative ways of inhibiting Hsp90 chaperone machinery.Entities:
Keywords: Cdc37; Hsp90 chaperone machinery; Kinase client; Protein interaction
Mesh:
Substances:
Year: 2018 PMID: 29699578 PMCID: PMC5921262 DOI: 10.1186/s13045-018-0602-8
Source DB: PubMed Journal: J Hematol Oncol ISSN: 1756-8722 Impact factor: 17.388
Fig. 1The protein–protein interaction of Hsp90-Cdc37’s client proteins. Using the FunRich tool to analyze the protein–protein interaction of Hsp90-Cdc37’s client proteins. 449 PPI pairs are formed by these 267 proteins in total. PPI: protein–protein interaction
The core client proteins. The 29 client proteins formed at least 10 pairs in the PPI network
| Item | Protein name | Gene symbol | Molecular functions | Partner of PPI pair |
|---|---|---|---|---|
| 1 | SRC | SRC | Kinase, tyrosine-protein kinase, transferase | MAP4K1, PRKCA, PRKCE, RET, TYRO3, PTK2B, CHUK, DDR2, ADRBK1, EGFR, BMX, KIT, PDGFRB, RAF1, ERBB2, IKBKB, MATK, PRKCZ, ABL1, PTK2, AXL, AR, PRKACA, CDC25C, AKT1, ITK, FYN, IGF1R, CSF1R, PRKCH, PDPK1, EPHA4, LYN, PRKD1, FGR |
| 2 | EGFR | EGFR | Developmental protein, host cell receptor for virus entry, kinase, receptor, tyrosine-protein kinase, transferase | MAP4K1, EPHA2, AR, LYN, PDGFRB, PRKD1, FER, SRC, PTK2B, ERBB3, MAP3K12, CDK1, YES1, ERBB2, PRKCA, IGF1R, PTK2, RIPK1, MAP3K14, CAMK2A, ERBB4, VAV3, PTK6, ADRBK1, TNK2, PRKACA, CAMK2G, MAPK14 |
| 3 | FYN | FYN | Developmental protein, kinase, tyrosine-protein kinase, transferase | ITK, NTRK2, RAF1, NR3C1, ZAP70, TNK2, PRKCQ, PRKCE, TYK2, PTK2B, MAP4K1, CSF1R, TYRO3, PTK2, EPHA4, SRC, CDK1, YES1, PDGFRB, ABL1, PRKCZ, MAPT, NEK8, KIT, BTK, MOS, PRKCH |
| 4 | Raf-1 | RAF1 | Kinase, serine/threonine-protein kinase, transferase | MAP3K1, PRKCZ, FYN, PDGFRB, AR, STK3, BRAF, SRC, KSR1, AKT1, PRKCA, JAK1, MAPK3, PRKCE, MAPK7, DMPK, PRKACA, MAP3K5, NR3C1, LCK, KSR2 |
| 5 | AKT1 | AKT1 | Kinase, serine/threonine-protein kinase, transferase | PDPK1, PRKCQ, PKN2, AR, CHUK, MAP3K8, RAF1, BRAF, MAP3K11, PRKCZ, IKBKB, SRC, MAPK14, CAMKK1, AKT2, IRAK1, PAK6, MAP3K5, GSK3A, CHEK1 |
| 6 | ERK1 | MAPK3 | Kinase, serine/threonine-protein kinase, transferase | DAPK1, RPS6KA2, RPS6KA3, RPS6KA4, MAPK14, PRKCZ, RPS6KA1, KSR2, PRKCE, LCK, RAF1, CDC25C, MAP3K14, NTRK1, LYN, NTRK3, ADRBK1, BRAF, RET |
| 7 | P38 | MAPK14 | Kinase, serine/threonine-protein kinase, transferase | IRAK1, DYRK1B, RPS6KA4, RPS6KA3, MAPK3, MAP3K7, CSNK2A1, TGFBR1, MAP2K6, MAP2K7, CAMKK2, AKT1, RPS6KA5, CDC25C, PKN1, ELK3, RET, EGFR |
| 8 | FAK1 | PTK2 | Kinase, tyrosine-protein kinase, transferase | EPHA2, LYN, BMX, RET, IGF1R, SRC, EGFR, FLT4, FYN, FGR, PDGFRB, ERBB2, YES1, LCK, PTK2B, ERBB3, RIPK1 |
| 9 | IKK-β | IKBKB | Kinase, serine/threonine-protein kinase, transferase | CHUK, MAP3K7, EIF2AK2, MAP3K14, MAP3K1, PRKCQ, PRKCB, MAP3K3, PRKCZ, SRC, TGFBR1, MAP3K11, AKT1, ACVR1, IRAK1, TBK1 |
| 10 | TGFR-1 | TGFBR1 | Kinase, receptor, serine/threonine-protein kinase, transferase | CHUK, CDK17, AMHR2, DAPK2, AURKB, TGFBR2, MAPK14, CDK14, CDK6, IKBKB, MAP3K7, TSSK1B, NEK8, ITK, ACVR1, CDK4 |
| 11 | LYN | LYN | Kinase, tyrosine-protein kinase, transferase | TYK2, PTK2, MATK, EGFR, KIT, CDK2, CDK1, BTK, CDK4, CSF1R, PTK2B, PRKCQ, MAPK3, MAP4K1, SRC, MAP3K3 |
| 12 | PKC2 | PRKCZ | Kinase, serine/threonine-protein kinase, transferase | RAF1, DAPK3, MAPK3, JAK1, PDPK1, IKBKB, SRC, PRKCQ, AKT3, AKT1, GSK3A, MAP2K5, IRAK1, BTK, FYN, PRKCA |
| 13 | PDK1 | PDPK1 | Activator, kinase, serine/threonine-protein kinase, transferase | PKN1, AKT1, PRKACA, PKN2, RPS6KA1, RPS6KA3, PRKCZ, PTK2B, PRKCE, SGK3, AKT2, PRKCB, SRC, SGK2, AKT3 |
| 14 | IKK-α | CHUK | Kinase, serine/threonine-protein kinase, transferase | MAP3K8, MAP3K7, IKBKB, TGFBR1, SRC, MAP3K14, AKT1, AKT2, IRAK1, PRKCB, EIF2AK2, MAP3K11, PRKCQ, CHEK1, MAP3K3 |
| 15 | MEKK7 | MAP3K7 | Kinase, serine/threonine-protein kinase, transferase | CHUK, IKBKB, MAP4K1, MAP2K7, MAPK14, MAP2K6, MAP3K5, RIPK1, NLK, TGFBR1, MAP3K14, MAP3K3, EIF2AK2, MAP4K4, IRAK1 |
| 16 | BTK | BTK | Kinase, tyrosine-protein kinase, transferase | PRKCQ, PRKD1, LYN, JAK1, ABL1, BMX, IRAK1, PRKCE, PRKCZ, PRKCB, HCK, FYN, KIT, ITK, PRKCA |
| 17 | ABL | ABL1 | DNA-binding, kinase, tyrosine-protein kinase, transferase | HCK, MAP4K1, PRKD1, SRC, NTRK1, NEK8, KIT, BTK, JAK1, ZAP70, CDK1, FYN, MAPT, UHMK1 |
| 18 | MEKK5 | MAP3K5 | Kinase, serine/threonine-protein kinase, transferase | MAP2K7, EIF2AK2, MAP3K6, MAP3K7, MAP2K6, MAP3K2, MAP3K3, PRKAA2, RAF1, ERN1, AKT1, IGF1R, ALK |
| 19 | LCK | LCK | Kinase, tyrosine-protein kinase, transferase | PRKCA, ZAP70, ITK, PRKCQ, MAPK3, KIT, CDC25C, PRKACA, PTK2B, AXL, PTK2, RAF1, NR3C1 |
| 20 | FAK2 | PTK2B | Kinase, tyrosine-protein kinase, transferase | SRC, ZAP70, EGFR, FYN, PDPK1, ERBB3, JAK1, LYN, MATK, LCK, ERBB2, PTK2, FGFR3 |
| 21 | PKACA | PRKACA | Kinase, serine/threonine-protein kinase, transferase | PDPK1, STK11, NR3C1, SRC, GSK3A, CAMKK2, LCK, ADRBK1, RAF1, MAP3K3, EGFR, BRAF |
| 22 | IRAK | IRAK1 | Kinase, serine/threonine-protein kinase, transferase | MAPK14, CHUK, IRAK3, IRAK2, PRKCZ, MAP3K7, BTK, AKT1, RIPK2, CAMKK2, IKBKB, NTRK3 |
| 23 | JAK1 | JAK1 | Kinase, tyrosine-protein kinase, transferase | IGF1R, PRKCZ, TYK2, RAF1, PTK2B, EIF2AK2, BTK, ABL1, PDGFRA, FES, PDGFRB, FER |
| 24 | CDK1 | CDK1 | Host cell receptor for virus entry, kinase, receptor, serine/threonine-protein kinase, transferase | PKMYT1, CDC25C, LYN, EGFR, CSNK2A1, AR, PRKCB, MAPT, FYN, ABL1, AURKB, TGFBR2 |
| 25 | PDGFR-1 | PDGFRB | Developmental protein, kinase, receptor, tyrosine-protein kinase, transferase | VAV3, RAF1, EGFR, SRC, PDGFRA, TYK2, ARAF, FYN, YES1, EIF2AK2, JAK1, PTK2 |
| 26 | MEKK3 | MAP3K3 | Kinase, serine/threonine-protein kinase, transferase | MAP3K2, ALK, MAP2K5, IKBKB, MAP3K7, MYLK2, MAP3K5, PRKACA, RIPK1, CHUK, LYN |
| 27 | CD117 | KIT | Kinase, receptor, tyrosine-protein kinase, transferase | LYN, SRC, MATK, HCK, YES1, LCK, ABL1, FYN, BTK, PRKCA, PRKCB |
| 28 | AR | AR | Activator, DNA-binding, receptor | PAK6, AKT1, EGFR, GTF2F1, RAF1, GSK3A, NR3C1, CDK6, SRC, CDK1, CDK9 |
| 29 | GSK3α | GSK3A | Kinase, serine/threonine-protein kinase, signal transduction inhibitor, transferase | PRKCA, AR, MAPT, PRKACA, PRKCZ, SGK3, MAP3K11, PRKCB, AKT1, PRKCG |
Fig. 2A speculative model for the Hsp90-Cdc37-client protein cycle. Cdc37 first tests the proper substrates and establishes stable connection with the client protein to create a Cdc37-client protein binary complex. Then, the binary complex binds to Hsp90 to form a ternary complex. The formation of the Hsp90-Cdc37-client protein ternary complex finally facilitates client protein loading onto the Hsp90 chaperone machinery. It is worthy of note that Cdc37 will be phosphorylated by casein kinase 2 (CK2) at Ser13 before connecting with client proteins and dephosphorylated by the protein phosphatase 5 (PP5) before client protein release
Targeting the Hsp90-Cdc37-client protein interaction to disrupt Hsp90 chaperone machinery
| The potential approaches to disrupt the Hsp90-Cdc37-client protein interaction | Related mechanisms | References |
|---|---|---|
| Targeting Cdc37 | ||
| siRNAs or shRNA | Silencing Cdc37 | [ |
| Targeting Cdc37-client interaction | ||
| 4,5,6,7-Tetrabromobenzotriazole | CK2 inhibitors, suppressing Cdc37 phosphorylation at Ser13 site | [ |
| PP5 mutation | Suppressing Cdc37 dephosphorylation | [ |
| Vemurafenib | B-raf inhibitor. Antagonize Cdc37 interaction with kinases | [ |
| Lapatinib | EGFR/HER2 inhibitor. Antagonize Cdc37 interaction with kinases | [ |
| Targeting Hsp90-Cdc37 interaction | ||
| Celastrol | Blocking the critical interaction of Hsp90 at Glu33 and Cdc37 at Arg167 | [ |
| Sulforaphane | Disrupting the formation of Hsp90-Cdc37 complex by direct modification of specific amino acids residues of Hsp90 | [ |
| FW-04-804 | Binding sites at Gln133 and Glu47/Arg46 of Hsp90 | [ |
| Withaferin A | Blocking several H-bond between Hsp90-Cdc37 interaction, like Ser113 (Hsp90)-Gln208 (Cdc37) bond and Gln133 (Hsp90)-Arg166 (Cdc37) bond | [ |
| Kongensin A | Covalently binds to a cysteine 420 in the middle domain of Hsp90 and dissociates Hsp90 from Cdc37 | [ |
| Platycodin D | H-bond connection with Hsp90 at Arg32 and Phe200 and Cdc37 at Asp169 and Asp170 | [ |
| Pep-1 | Cdc37-derived peptides, bound to Hsp90 N-terminal domain and inhibited Hsp90 ATPase activity | [ |
There are three potential approaches to disrupt the function of Hsp90 chaperone machinery: targeting Cdc37, Cdc37-client protein interaction, and Hsp90-Cdc37 interaction