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Updated: Jul 18, 2026

Phosphopeptide Enrichment Coupled with Label-free Quantitative Mass Spectrometry to Investigate the Phosphoproteome in Prostate Cancer
Published on: August 2, 2018
Mass spectrometry analysis of the native protein complex containing actinin-4 in prostate cancer cells
Tomohiko Hara1, Kazufumi Honda, Miki Shitashige
1Chemotherapy Division and Cancer Proteomics Project, National Cancer Center Research Institute, 5-1-1 Tsukiji, Tokyo 104-0045, Japan.
Abstract:
Actinin-4 was originally identified as an actin-binding protein associated with cell motility and cancer invasion and metastasis. However, actinin-4 forms complexes with a large number of different partner proteins and is speculated to have several distinct functions depending on its partner. The level of actinin-4 expression was found to be significantly lower in prostate cancer cells than in non-cancerous basal cells, and restoration of actinin-4 expression inhibited cell proliferation by prostate cancer cell line 22RV1. Immunoprecipitation and mass spectrometry analysis revealed that actinin-4 forms native complexes with several partner proteins in 22RV1 cells, including with beta/gamma-actin, calmodulin, the clathrin heavy chain, non-muscular myosin heavy chain, heterogeneous nuclear ribonucleoprotein A1, and Ras-GTPase-activating protein SH3 domain-binding protein. Clathrin is a coat protein that covers the internalized membrane pit that forms during early endocytosis. We found that other clathrin-related and unrelated cargo proteins, including dynamin, adaptin-delta, beta subunit of neuronal adaptin-like protein, and p47A, also interact with actinin-4. Immunofluorescence microscopy revealed that dynamin and clathrin co-localized with actinin-4 at the sites of membrane ruffling, and transfection of actinin-4 cDNA facilitated the transport of transferrin into perinuclear endosomes. Endocytosis terminates signaling evoked by cell surface receptors and regulates the recycling of receptors and ligands. We identified a panel of proteins whose expression and/or subcellular localization was regulated by actinin-4 by performing organelle fractionation and ICAT-LC-MS/MS. The decreased expression of actinin-4 protein in prostate cancer cells may cause aberrations in the intracellular trafficking of various cell surface molecules and contribute to carcinogenesis.
Insights
Reduced actinin-4 expression in prostate cancer may impair cell surface molecule trafficking. Restoring actinin-4 inhibits cancer cell proliferation, suggesting a role in endocytosis and carcinogenesis.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Actinin-4 is an actin-binding protein linked to cell motility and cancer metastasis.
- Its function is context-dependent, varying with interacting partner proteins.
- Actinin-4 expression is notably lower in prostate cancer cells compared to normal basal cells.
Purpose of the Study:
- To investigate the role of actinin-4 in prostate cancer cell proliferation and intracellular trafficking.
- To identify novel actinin-4 interacting proteins in prostate cancer cells.
- To elucidate the functional impact of actinin-4 on endocytosis and cell surface molecule transport.
Main Methods:
- Prostate cancer cell line (22RV1) culture and manipulation.
- Immunoprecipitation and mass spectrometry (ICAT-LC-MS/MS) for protein complex identification.
- Immunofluorescence microscopy for co-localization studies.
- Organelle fractionation to analyze protein expression and localization.
Main Results:
- Actinin-4 restoration inhibited proliferation in the 22RV1 prostate cancer cell line.
- Actinin-4 was found to complex with beta/gamma-actin, calmodulin, clathrin, myosin, hnRNP A1, and GAB1.
- Actinin-4 interacts with endocytic proteins like dynamin and adaptins, co-localizing with clathrin at membrane ruffles.
- Actinin-4 facilitates transferrin transport to perinuclear endosomes, indicating a role in endocytosis.
Conclusions:
- Decreased actinin-4 expression in prostate cancer may disrupt intracellular trafficking of cell surface molecules.
- Actinin-4 plays a role in endocytosis and intracellular transport, potentially contributing to carcinogenesis.
- Modulating actinin-4 levels could offer therapeutic strategies for prostate cancer.
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