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Rapid Analysis of Chromosome Aberrations in Mouse B Lymphocytes by PNA-FISH
Published on: August 19, 2014
Mutation analysis of the pRb pathway in 2',3'-dideoxycytidine- and 1, 3-butadiene-induced mouse lymphomas
S M Zhuang1, R W Wiseman, P Söderkvist
1Division of Cell Biology, Department of Biomedicine and Surgery, Faculty of Health Sciences, Linköping University, S 581-85, Linköping, Sweden. shizh@mcb.liu.se
Abstract:
The pRb pathway plays a key role in controlling the G1/S transition in cell cycle progression. Aberrations of various components of the pRb pathway, such as retinoblastoma protein and its upstream actors including cyclin D1, cyclin dependence kinase-4 and p16/p15 cyclin dependent kinase inhibitors, have been reported in a variety of human tumors. Furthermore, the alterations of retinoblastoma protein and its upstream components often occur in a reciprocal manner. Previously, we have reported frequent inactivation of the Cdkn2a/Cdkn2b loci encoding p16/p15 cyclin dependent kinase inhibitors in a subset of 2',3'-dideoxycytidine- and 1, 3-butadiene-induced mouse lymphomas (S.-M. Zhuang, A. Schippert, A. Haugen-Strano, R.W. Wiseman, P. Söderkvist, Inactivation of p16(INK4a)-alpha, p16(INK4a)-beta and p15(INK4b) genes in 2', 3'-dideoxycytidine- and 1,3-butadiene-induced lymphomas, Oncogene 16 (1998) 803-808), indicating the involvement of pRb pathway in lymphomagenesis. To investigate whether alteration of other components in pRb pathway is an alternative mechanism underlying the development of these chemically induced lymphomas, we have examined the genetic status of Rb1, Ccnd1 and Cdk4 genes that encode retinoblastoma protein, cyclin D1 and cyclin dependence kinase-4, respectively. Gross alterations of the Rb1, Ccnd1, and Cdk4 genes were not detected by Southern analysis in any of the tumors examined. In addition, single-strand conformation analysis failed to reveal point mutations in the Cdk4 amino terminal domain that is important for its association with Cdkn2a gene products. These results indicate that the mechanisms underlying the development of 2', 3'-dideoxycytidine- and 1,3-butadiene-induced lymphomas involve inactivation of p16/p15 cyclin-dependent kinase inhibitors but not genomic alterations of the Rb1, Ccnd1 and Cdk4 genes.
Insights
This study investigated the pRb pathway in chemically induced mouse lymphomas. Results show that inactivation of p16/p15 cyclin-dependent kinase inhibitors, not Rb1, Ccnd1, or Cdk4 gene alterations, drives lymphoma development.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Cycle Regulation
Background:
- The retinoblastoma (pRb) pathway is crucial for cell cycle G1/S transition.
- Aberrations in pRb pathway components are common in human tumors.
- Previous work implicated pRb pathway involvement in lymphomagenesis.
Purpose of the Study:
- To investigate alternative mechanisms in chemically induced lymphomas.
- To examine the genetic status of Rb1, Ccnd1, and Cdk4 genes.
- To determine if these genes are altered in 2',3'-dideoxycytidine- and 1,3-butadiene-induced lymphomas.
Main Methods:
- Southern blot analysis to detect gross alterations in Rb1, Ccnd1, and Cdk4 genes.
- Single-strand conformation analysis to identify point mutations in the Cdk4 amino-terminal domain.
- Examination of mouse lymphomas induced by 2',3'-dideoxycytidine and 1,3-butadiene.
Main Results:
- No gross genomic alterations of Rb1, Ccnd1, or Cdk4 genes were detected.
- No point mutations were found in the Cdk4 amino-terminal domain.
- Previous findings of p16/p15 cyclin-dependent kinase inhibitor inactivation were confirmed.
Conclusions:
- Lymphomagenesis in this model involves p16/p15 cyclin-dependent kinase inhibitor inactivation.
- Genomic alterations of Rb1, Ccnd1, and Cdk4 genes are not the underlying mechanism.
- The pRb pathway's role in chemically induced lymphomas is primarily through CDKN2A/B locus inactivation.

