Identification of cyclophilin-40-interacting proteins reveals potential cellular function of cyclophilin-40
Miki Susanto Park1, Feixia Chu, Jinghang Xie
1Department of Pharmaceutics and Medicinal Chemistry, Thomas J. Long School of Pharmacy and Health Sciences, University of the Pacific, Stockton, CA 95211, USA. mpark@pacific.edu
Insights
This study identifies proteins interacting with Cyclophilin-40 (CyP40), finding RACK1 suppresses hypoxia-induced HIF-1α protein accumulation in a CyP40-dependent manner. This reveals a novel CyP40-mediated regulatory pathway.
Area of Science:
- Molecular Biology
- Cell Biology
- Protein Interactions
Background:
- Cyclophilin-40 (CyP40) is an immunophilin within Hsp90 complexes.
- Understanding CyP40's interactions is crucial for elucidating its cellular functions.
Purpose of the Study:
- To identify proteins that interact with Cyclophilin-40 (CyP40).
- To investigate the functional consequences of CyP40-interacting proteins, specifically RACK1, on hypoxia-induced pathways.
Main Methods:
- Tandem affinity purification of CyP40-interacting proteins from HeLa cells.
- Mass spectrometry for protein identification.
- Validation of interactions in various cell systems (rabbit reticulocyte lysate, bacteria, MCF-7 cells).
- Luciferase reporter assays and Western blotting to assess RACK1 and HIF-1α activity in response to hypoxia and CyP40 levels.
Main Results:
- Identified 11 proteins interacting with CyP40, including RACK1, Ku70, RPS3, and NF45.
- Confirmed interactions of RACK1, Ku70, RPS3, and NF45 with CyP40.
- RACK1 suppressed hypoxia-induced luciferase activity and HIF-1α protein accumulation.
- This RACK1-mediated suppression of HIF-1α was dependent on CyP40 levels.
Conclusions:
- RACK1 is a novel CyP40-interacting protein.
- RACK1's ability to reduce HIF-1α protein accumulation is mediated by CyP40.
- This study uncovers a CyP40-dependent mechanism regulating hypoxia response.
Abstract:
Cyclophilin-40 (CyP40) is part of the immunophilin family and is found in Hsp90-containing protein complexes. We were interested in identifying proteins that interact with CyP40. CyP40-interacting proteins in HeLa cells were identified using the tandem affinity purification approach. Adenovirus expressing human CyP40 protein (Ad-CyP40), fused with streptavidin and calmodulin binding peptides at the N terminus, was generated. Proteins were separated on a sodium dodecyl sulfate-polyacrylamide gel electrophoresis gel after tandem affinity purification. Here 10 silver-stained protein bands that were enriched in the Ad-CyP40-infected lysate and the corresponding regions in the control lysate were excised, digested by trypsin, and identified by tandem mass spectrometric analysis. Of 11 interacting proteins that were identified, 4 (RACK1, Ku70, RPS3, and NF45) were expressed in rabbit reticulocyte lysate, bacteria, and MCF-7 cells. We confirmed that these proteins interact with CyP40. We observed that RACK1 suppressed the cobalt chloride-induced, hypoxia response element-dependent luciferase activity in MCF-7 cells but not in MCF-7 stable cells expressing approximately 10% of the cellular CyP40 content. In addition, RACK1 reduced the HIF-1α protein accumulation after cobalt chloride treatment, which was not observed when the CyP40 content was down-regulated. Collectively, we conclude that reduction of the HIF-1 α protein by RACK1 is CyP40-mediated.
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