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DNA-PK, the DNA-activated protein kinase, is differentially expressed in normal and malignant human tissues
1Department of Pathology, State University of New York at Stony Brook, 11794, USA.
Abstract:
DNA-PK is a nuclear, serine/threonine protein kinase required for repairing DNA double-strand breaks and for V(D)J recombination. To determine the distribution of DNA-PK in human tissues, we assayed paraffin-embedded sections of normal and cancerous tissues for DNA-PKcs and Ku80 by immunohistochemistry. We also assayed for Brca2, a human tumor suppressor gene that is implicated in the repair of DNA strand-breaks. Brca2 was strongly expressed in epithelial cells of the breast, endometrium, and thymus, in tingible body macrophages of follicular germinal centers of lymphoid tissue, and in reticuloendothelial cells in the spleen. DNA-PKcs and Ku80 expression was usually parallel, but both were expressed in a highly cell- and tissue-specific manner. The highest levels were observed in spermatogenic cells (but not in spermatozoa), and in neurons and glial cells of the central and autonomic nervous system. Neither protein was consistently expressed in liver nor in resting mammary epithelium, but lactating breast epithelium was strongly positive for DNA-PKcs and Ku80. In contrast to established human cell cultures, expression between cells in the same tissue was highly selective in the epidermis, exocrine pancreas, renal glomeruli, the red pulp of the spleen, and within cellular compartments of tonsils, lymph nodes, and thymus. Most cancerous tissues were consistently positive for DNA-PKcs and Ku80, except invasive carcinoma of the breast. DNA-PKcs, Ku80, and Ku70 mRNAs were expressed in all normal tissues with relatively little variation in levels. Our results suggest that the apparent absence of DNA-PKcs and Ku80 from some cells or tissues is a consequence of post-transcriptional mechanisms that regulate protein levels.
Insights
This study maps the distribution of DNA-PKcs and Ku80 proteins in human tissues, revealing cell-specific expression patterns crucial for DNA repair and immune system functions.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- DNA-PK (DNA-dependent protein kinase) is vital for DNA double-strand break repair and V(D)J recombination.
- Understanding the tissue distribution of DNA-PKcs and Ku80 is essential for comprehending their roles in cellular processes.
Purpose of the Study:
- To investigate the tissue-specific expression patterns of DNA-PKcs and Ku80 in normal and cancerous human tissues.
- To correlate the expression of DNA-PKcs and Ku80 with the function of Brca2 in DNA repair.
Main Methods:
- Immunohistochemistry was used to assay paraffin-embedded sections of normal and cancerous human tissues for DNA-PKcs and Ku80.
- Expression levels of Brca2 were also assessed.
Main Results:
- DNA-PKcs and Ku80 exhibited highly cell- and tissue-specific expression, with notable levels in spermatogenic cells and neurons.
- Lactating breast epithelium showed strong expression, unlike resting epithelium or liver.
- Most cancers were positive for DNA-PKcs and Ku80, with exceptions like invasive breast carcinoma.
- mRNA levels for DNA-PKcs, Ku80, and Ku70 were consistent across tissues, suggesting post-transcriptional regulation of protein levels.
Conclusions:
- The protein levels of DNA-PKcs and Ku80 are regulated post-transcriptionally, leading to varied expression in different cells and tissues.
- The cell-specific localization of these DNA repair proteins highlights their specialized roles in human physiology and disease.