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Updated: Jan 29, 2026

Identification of Protein Interacting Partners Using Tandem Affinity Purification
Published on: February 25, 2012
Candidate Interaction Partners of Calpain-5 Suggest Clues to Its Involvement in Neovascular Inflammatory
Jozsef Gal1,2,3,4, Vimala Bondada1, Rachel Crasta1
1Spinal Cord and Brain Injury Research Center (SCoBIRC), University of Kentucky, Lexington, KY 40536, USA.
Abstract:
Although calpain-5/CAPN5 is widely expressed in mammals, little is known regarding its functions. Pathogenic mutations of CAPN5 are causal for a devastating autoimmune eye disease, neovascular inflammatory vitreoretinopathy (NIV). To provide insight into both the physiological and pathological roles of CAPN5, it is essential to identify candidate interaction partners and possible substrates. Human SH-SY5Y neuroblastoma cells, transfected with full-length catalytically dead (Cys81Ala) CAPN5-3×FLAG, were used for anti-FLAG co-immunoprecipitation (co-IP) and quantitative proteomics using Sequential Window Acquisition of all THeoretical mass spectra (SWATH-MS). Fifty-one proteins were enriched at least four-fold, p < 0.01, relative to cells transfected with an empty FLAG vector. A high proportion (24/51) of candidate CAPN5 interaction partners are associated with protein quality control, including components of the chaperonin, chaperone, and ubiquitin-proteasome systems. Additional candidate interactors include tubulins, kinases, phosphatases, G proteins, and mitochondrial proteins. CAPN5 interactions for 14 of the candidate proteins were confirmed by co-IP and immunoblotting. Of these 14 proteins, 11 exhibited in vitro calcium-induced proteolysis following co-IP with WT CAPN5-3×FLAG. Impaired calcium-induced proteolysis of co-IP proteins was observed for the pathogenic CAPN5 variants R243L and R289W. Further studies are needed to validate the association of candidate CAPN5 interactors with proteins and complexes suggested by the SWATH-MS and co-IP results, and the possible role of CAPN5 within such complexes. The possible involvement of CAPN5 in protein quality control is relevant to NIV, as defects in protein quality control have been implicated in inherited retinal disorders. Proteomic data are available via ProteomeXchange with identifier PXD068008.
Insights
Calpain-5 (CAPN5) interacts with protein quality control systems, potentially explaining its role in neovascular inflammatory vitreoretinopathy (NIV). Pathogenic CAPN5 mutations impair protein cleavage, suggesting a link to inherited retinal disorders.
Area of Science:
- Biochemistry
- Cell Biology
- Proteomics
Background:
- Calpain-5 (CAPN5) is widely expressed but its functions remain largely unknown.
- Pathogenic CAPN5 mutations cause neovascular inflammatory vitreoretinopathy (NIV), a severe autoimmune eye disease.
Purpose of the Study:
- To identify CAPN5 interaction partners and potential substrates.
- To elucidate the physiological and pathological roles of CAPN5.
Main Methods:
- Utilized anti-FLAG co-immunoprecipitation (co-IP) and quantitative proteomics (SWATH-MS) in human neuroblastoma cells expressing catalytically dead CAPN5.
- Confirmed interactions via co-IP and immunoblotting.
- Assessed in vitro calcium-induced proteolysis of interacting proteins with wild-type (WT) and pathogenic CAPN5 variants.
Main Results:
- Identified 51 enriched proteins, with a significant proportion (24/51) involved in protein quality control (chaperonins, proteasome systems).
- Confirmed interactions for 14 proteins, 11 of which were substrates for calcium-induced proteolysis by WT CAPN5.
- Pathogenic CAPN5 variants (R243L, R289W) showed impaired proteolysis of interacting proteins.
Conclusions:
- CAPN5 interacts with protein quality control machinery, including chaperones and the ubiquitin-proteasome system.
- Dysfunctional CAPN5 proteolysis of interacting proteins may contribute to NIV pathogenesis.
- Findings suggest a role for CAPN5 in protein quality control relevant to inherited retinal disorders.
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