Related Experiment Videos
Heterogeneous nuclear expression of the promyelocytic leukemia (PML) protein in normal and neoplastic human tissues
M Gambacorta1, L Flenghi, M Fagioli
1Institute of Pathology, Ospedale Niguarda, Milan, Italy.
Abstract:
The RING-finger promyelocytic leukemia (PML) protein is the product of the PML gene that fuses with the retinoic acid receptor-alpha gene in the t(15; 17) translocation of acute promyelocytic leukemia. Wild-type PML localizes in the nucleus with a typical speckled pattern that is a consequence of the concentration of the protein within discrete subnuclear domains known as nuclear bodies. Delocalization of PML from nuclear bodies has been documented in acute promyelocytic leukemia cells and suggested to contribute to leukemogenesis. In an attempt to get new insights into the function of the wild-type PML protein and to investigate whether it displays an altered expression pattern in neoplasms other than acute promyelocytic leukemia, we stained a large number of normal and neoplastic human tissues with a new murine monoclonal antibody (PG-M3) directed against the amino-terminal region of PML. As the PG-M3 epitope is partially resistant to fixatives, only cells that overexpress PML are detected by the antibody in microwave-heated paraffin sections. Among normal tissues, PML was characteristically up-regulated in activated epithelioid histiocytes and fibroblasts in a variety of pathological conditions, columnar epithelium in small active thyroid follicles, well differentiated foamy cells in the center of sebaceous glands, and hypersecretory endometria (Arias-Stella). Interferons, the PML of which is a primary target gene, and estrogens are likely to represent some of the cytokines and/or hormones that may be involved in the up-regulation of PML under these circumstances. In keeping with this concept, we found that PML is frequently overexpressed in Hodgkin and Reed-Sternberg cells of Hodgkin's disease, a tumor of cytokine-producing cells. Among solid tumors, overexpression of PML was frequently found in carcinomas of larynx and thyroid (papillary), epithelial thymomas, and Kaposi's sarcoma, whereas carcinomas of the lung, thyroid (follicular), breast, and colon were frequently negative or weakly PML+. We did not observe any changes in the levels of PML expression as the lesion progressed from benign dysplasia to carcinoma. Our immunohistological data are consistent with the hypothesized growth suppressor function of PML and strongly suggest that PML expression levels are likely to be modulated by a variety of stimuli, including cytokines and hormones.
Insights
Promyelocytic leukemia (PML) protein expression is altered in various cancers, not just acute promyelocytic leukemia. This study investigated PML
Area of Science:
- Oncology
- Molecular Biology
- Immunohistochemistry
Background:
- The promyelocytic leukemia (PML) protein, a product of the PML gene, is crucial in acute promyelocytic leukemia due to its fusion with the retinoic acid receptor-alpha gene.
- Wild-type PML protein normally localizes to nuclear bodies, but its delocalization is implicated in leukemogenesis.
- Understanding PML's function and expression in various neoplasms beyond acute promyelocytic leukemia is essential.
Purpose of the Study:
- To investigate the expression pattern of wild-type PML protein in a wide range of normal and neoplastic human tissues.
- To explore the potential role of PML in neoplasms other than acute promyelocytic leukemia.
- To gain new insights into the function of the wild-type PML protein.
Main Methods:
- Utilized a new murine monoclonal antibody (PG-M3) targeting the amino-terminal region of PML for immunohistochemical staining.
- Employed microwave-heated paraffin sections, where the antibody specifically detects cells overexpressing PML due to epitope resistance to fixatives.
- Analyzed a large cohort of normal and neoplastic human tissues.
Main Results:
- PML was characteristically up-regulated in activated histiocytes, fibroblasts, thyroid follicular epithelium, sebaceous gland cells, and endometria.
- PML overexpression was frequently observed in Hodgkin's disease (Hodgkin and Reed-Sternberg cells), laryngeal and papillary thyroid carcinomas, thymomas, and Kaposi's sarcoma.
- Carcinomas of the lung, follicular thyroid, breast, and colon showed weak or negative PML expression; no changes were noted from dysplasia to carcinoma.
Conclusions:
- PML expression is modulated by cytokines (like interferons) and hormones (like estrogens), as evidenced by its up-regulation in specific normal tissues and tumors.
- The observed expression patterns in various solid tumors support the hypothesized growth suppressor function of PML.
- PML expression levels are influenced by diverse stimuli, suggesting its broader role in cellular regulation beyond acute promyelocytic leukemia.