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Selective Capture of 5-hydroxymethylcytosine from Genomic DNA
Published on: October 5, 2012
Global 5-Hydroxymethylcytosine Levels Are Profoundly Reduced in Multiple Genitourinary Malignancies
Enrico Munari1, Alcides Chaux1,2, Ajay M Vaghasia3
1Department of Pathology, Johns Hopkins University, Baltimore, Maryland, 21231, United States of America.
Abstract:
Solid tumors are characterized by a plethora of epigenetic changes. In particular, patterns methylation of cytosines at the 5-position (5mC) in the context of CpGs are frequently altered in tumors. Recent evidence suggests that 5mC can get converted to 5-hydroxylmethylcytosine (5hmC) in an enzymatic process involving ten eleven translocation (TET) protein family members, and this process appears to be important in facilitating plasticity of cytosine methylation. Here we evaluated the global levels of 5hmC using a validated immunohistochemical staining method in a large series of clear cell renal cell carcinoma (n = 111), urothelial cell carcinoma (n = 55) and testicular germ cell tumors (n = 84) and matched adjacent benign tissues. Whereas tumor-adjacent benign tissues were mostly characterized by high levels of 5hmC, renal cell carcinoma and urothelial cell carcinoma showed dramatically reduced staining for 5hmC. 5hmC levels were low in both primary tumors and metastases of clear cell renal cell carcinoma and showed no association with disease outcomes. In normal testis, robust 5hmC staining was only observed in stroma and Sertoli cells. Seminoma showed greatly reduced 5hmC immunolabeling, whereas differentiated teratoma, embryonal and yolk sack tumors exhibited high 5hmC levels. The substantial tumor specific loss of 5hmC, particularly in clear cell renal cell carcinoma and urothelial cell carcinoma, suggests that alterations in pathways involved in establishing and maintaining 5hmC levels might be very common in cancer and could potentially be exploited for diagnosis and treatment.
Insights
The study found significantly reduced 5-hydroxylmethylcytosine (5hmC) levels in clear cell renal cell carcinoma and urothelial cell carcinoma. This loss of 5hmC in tumors suggests potential diagnostic and therapeutic applications.
Area of Science:
- Epigenetics
- Cancer Biology
- Molecular Oncology
Background:
- Solid tumors exhibit widespread epigenetic alterations, including changes in DNA methylation patterns.
- 5-methylcytosine (5mC) can be converted to 5-hydroxylmethylcytosine (5hmC) via ten eleven translocation (TET) enzymes, impacting epigenetic plasticity.
Purpose of the Study:
- To evaluate global 5-hydroxylmethylcytosine (5hmC) levels in clear cell renal cell carcinoma, urothelial cell carcinoma, and testicular germ cell tumors.
- To compare 5hmC levels in tumors with matched adjacent benign tissues.
Main Methods:
- Validated immunohistochemical staining was employed to assess 5hmC levels.
- Analysis was performed on large cohorts: 111 clear cell renal cell carcinomas, 55 urothelial cell carcinomas, and 84 testicular germ cell tumors.
Main Results:
- Benign tissues typically showed high 5hmC levels, while renal cell carcinoma and urothelial cell carcinoma exhibited dramatically reduced 5hmC.
- 5hmC levels were consistently low in clear cell renal cell carcinoma primary tumors and metastases, with no correlation to disease outcomes.
- Normal testis displayed high 5hmC in stroma and Sertoli cells; seminomas had reduced 5hmC, whereas teratomas, embryonal, and yolk sac tumors showed high 5hmC.
Conclusions:
- A substantial, tumor-specific loss of 5hmC is observed in clear cell renal cell carcinoma and urothelial cell carcinoma.
- Altered 5hmC pathways are common in cancer and may offer avenues for diagnosis and treatment.

