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Fluorescence-based Monitoring of PAD4 Activity via a Pro-fluorescence Substrate Analog
Published on: November 5, 2014
Expression of peptidylarginine deiminase type 4 (PAD4) in various tumors
1Shandong Academy of Medical Sciences, Medicinal Biotechnology Centre, Jinan, Shandong, China.
Abstract:
Peptidylarginine deiminase type 4 (PAD4/PADI4) posttranslationally converts peptidylarginine to citrulline, in a process known as citrullination. Evidence suggests that PAD4 plays an essential role in pathogenesis of rheumatoid arthritis (RA). RA synovium has many features in common with tumor tissues, including abnormal cell proliferation, extensive fibrin deposition, high coagulation activity, and extreme angiogenesis. The purpose of the present study was to investigate expression of PAD4 in various tumor tissues. Immunohistochemistry indicated that PAD4 had significant expression in many tumor tissues, especially various adenocarcinoma. Western blotting with anti PAD4 antibody and immunostaining with anti citrulline antibody confirmed the expression of the enzyme in these tumors. Furthermore, our immunohistochemistry also detected co-location of PAD4 with cytokeratin (CK), a well-known tumor marker for oncological study in many tumors. Western blot analysis also detected citrulline signals in CK extracted from the tumors. In addition, CK 8, 18, and 19 following in vitro citrullination resisted to the digestion of caspase. The results further confirm the expression of PAD4 in the tumors and support that PAD4 may contribute to the disrupted apoptosis of tumors by caspase-mediated cleavage of CK. Double immunofluorescent labeling detected co-location of PAD4 with CD34, a cell marker of heamatopoietic progenitor cells (HPC) in bone marrow and other normal tissues, as well as in some fibroblast-like cells at stroma region of tumors, but not in the tumor cells. The findings imply that PAD4 is initially expressed in CD34(+) cells of bone marrow and then distributed in derives of the multi-potent progenitor cells in diverse tissues. The development of tumor cells expressing PAD4 is possibly associated with abnormal proliferation of CD34(+) stem cells.
Insights
Peptidylarginine deiminase type 4 (PAD4) is expressed in various tumors, particularly adenocarcinomas. This enzyme may contribute to tumor cell survival by altering cytokeratin, potentially impacting apoptosis and linking to abnormal stem cell proliferation.
Area of Science:
- Biochemistry
- Oncology
- Immunology
Background:
- Peptidylarginine deiminase type 4 (PAD4) catalyzes citrullination, a process implicated in rheumatoid arthritis pathogenesis.
- Rheumatoid arthritis synovium shares characteristics with tumor tissues, including abnormal proliferation and angiogenesis.
- The role of PAD4 in tumor biology remains largely unexplored.
Purpose of the Study:
- To investigate the expression of PAD4 in various human tumor tissues.
- To determine if PAD4 contributes to tumor cell survival mechanisms, such as resistance to apoptosis.
- To explore the cellular origin and distribution of PAD4 in tumor microenvironments.
Main Methods:
- Immunohistochemistry to detect PAD4 expression and co-localization with tumor markers (cytokeratin) and cell markers (CD34).
- Western blotting to confirm PAD4 and citrulline presence in tumor tissues and cytokeratins.
- In vitro citrullination assays to assess the effect of PAD4 on cytokeratin stability against caspase digestion.
Main Results:
- PAD4 was significantly expressed in multiple tumor types, especially adenocarcinomas.
- PAD4 and citrulline were detected in cytokeratin-positive tumor cells, and citrullinated cytokeratins (CK 8, 18, 19) showed resistance to caspase digestion.
- PAD4 co-localized with CD34 in bone marrow and stromal cells but not in tumor cells, suggesting an origin from CD34+ progenitor cells.
Conclusions:
- PAD4 is expressed in various tumors and may promote tumor survival by protecting cytokeratins from caspase-mediated apoptosis.
- PAD4 expression in tumors might originate from CD34+ hematopoietic progenitor cells, potentially linking abnormal stem cell proliferation to tumor development.
- These findings highlight PAD4 as a potential target in cancer therapy.
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