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Alterations of the cyclin D1/pRb/p16(INK4A) pathway in multiple myeloma
A Krämer1, B Schultheis, J Bergmann
1Medizinische Klinik und Poliklinik V, Universität Heidelberg, Heidelberg, Germany.
Abstract:
The retinoblastoma protein (pRb), p16(INK4A), D-type cyclins, and their partners cyclin-dependent kinase (CDK) 4 and 6 constitute a G(1) regulatory pathway commonly targeted in tumorigenesis. Several malignancies show a reciprocal correlation between genetic alterations of single members of the pRb pathway. Therefore, we determined the frequency of Rb deletions and cyclin D1 alterations by fluorescence in situ hybridization as well as 5' CpG island hypermethylation of the p16(INK4A)gene using methylation-specific polymerase chain reaction in bone marrow mononuclear cells from 82 individuals with plasma cell disorders. Alterations in at least one of the components of the pathway were found in 75%. Cyclin D1 translocations or amplifications were detected in 14/82 (17.1%), Rb deletions at 13q14 in 23/82 (28%) of the cases, including three (3.6%) homozygous deletions. p16(INK4A) was hypermethylated in 33/57 (57.9%) of the samples. Further analysis revealed a highly significant correlation between cyclin D1 alterations and extramedullar or leukemic myeloma manifestations (P = 0.014; Fisher's test). Whereas Rb deletions seemed to occur alternatively to cyclin D1 alterations, no reciprocal correlation was found between p16(INK4A) hypermethylations and cyclin D1 or Rb locus aberrations. Cyclin D1 locus alterations and Rb deletions were associated with a significantly worse prognosis whereas p16(INK4A) hypermethylation had no impact on survival. We conclude that cyclin D1 and Rb aberrations seem to occur as alternative events in plasma cell malignancies and contribute to clinical course and prognosis. In contrast, although p16(INK4A) hypermethylation is frequent, inactivation of p16(INK4A) seems not to be involved in the pathogenesis of plasma cell disorders.
Insights
Genetic alterations in the retinoblastoma (Rb) protein pathway are common in plasma cell disorders. Cyclin D1 and Rb aberrations correlate with worse prognosis, while p16(INK4A) hypermethylation does not impact survival.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The G(1) regulatory pathway involving retinoblastoma protein (pRb), p16(INK4A), D-type cyclins, and cyclin-dependent kinase (CDK) 4/6 is frequently altered in cancer.
- Reciprocal genetic alterations among pRb pathway components are observed in various malignancies.
Purpose of the Study:
- To investigate the frequency of alterations in Rb, cyclin D1, and p16(INK4A) in plasma cell disorders.
- To determine the correlation of these alterations with clinical manifestations and prognosis.
Main Methods:
- Fluorescence in situ hybridization (FISH) for Rb deletions and cyclin D1 alterations.
- Methylation-specific polymerase chain reaction (PCR) for p16(INK4A) 5' CpG island hypermethylation.
- Analysis of bone marrow mononuclear cells from 82 plasma cell disorder patients.
Main Results:
- At least one pRb pathway component alteration was found in 75% of patients.
- Cyclin D1 alterations occurred in 17.1%, Rb deletions in 28% (including 3.6% homozygous deletions), and p16(INK4A) hypermethylation in 57.9%.
- Cyclin D1 alterations correlated with extramedullary or leukemic myeloma. Rb deletions and cyclin D1 alterations were associated with a worse prognosis, while p16(INK4A) hypermethylation had no survival impact.
Conclusions:
- Cyclin D1 and Rb aberrations appear to be alternative events in plasma cell malignancies, influencing clinical course and prognosis.
- p16(INK4A) hypermethylation is frequent but does not seem to be involved in the pathogenesis of these disorders.
- These findings highlight the importance of the pRb pathway in plasma cell malignancy development and progression.