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Functional characterization of the candidate tumor suppressor gene NPRL2/G21 located in 3p21.3C
Jingfeng Li1, Fuli Wang, Klas Haraldson
1Microbiology and Tumor Biology Center, Center for Genomics and Bioinformatics, Karolinska Institute, Stockholm, Sweden.
Abstract:
Initial analysis identified the NPRL2/G21 gene located in 3p21.3C, the lung cancer region, as a strong candidate tumor suppressor gene. Here we provide additional evidence of the tumor suppressor function of NPRL2/G21. The gene has highly conserved homologs/orthologs ranging from yeast to humans. The yeast ortholog, NPR2, shows three highly conserved regions with 32 to 36% identity over the whole length. By sequence analysis, the main product of NPRL2/G21 encodes a soluble protein that has a bipartite nuclear localization signal, a protein-binding domain, similarity to the MutS core domain, and a newly identified nitrogen permease regulator 2 domain with unknown function. The gene is highly expressed in many tissues. We report inactivating mutations in a variety of tumors and cancer cell lines, growth suppression of tumor cells with tet-controlled NPRL2/G21 transgenes on plastic Petri dishes, and suppression of tumor formation in SCID mice. Screening of 7 renal, 5 lung, and 7 cervical carcinoma cell lines showed homozygous deletions in the 3' end of NPRL2 in 2 renal, 3 lung, and 1 cervical (HeLa) cell line. Deletions in the 3' part of NPRL2 could result in improper splicing, leading to the loss of the 1.8 kb functional NPRL2 mRNA. We speculate that the NPRL2/G21 nuclear protein may be involved in mismatch repair, cell cycle checkpoint signaling, and activation of apoptotic pathway(s). The yeast NPR2 was shown to be a target of cisplatin, suggesting that the human NPRL2/G21 may play a similar role. At least two homozygous deletions of NPRL2/G21 were detected in 6 tumor biopsies from various locations and with microsatellite instability. This study, together with previously obtained results, indicates that NPRL2 is a multiple tumor suppressor gene.
Insights
The NPRL2/G21 gene acts as a tumor suppressor, with inactivating mutations and deletions found in various cancers. Its function is supported by growth suppression in tumor cells and reduced tumor formation in mice.
Area of Science:
- Genetics
- Molecular Biology
- Oncology
Background:
- The NPRL2/G21 gene, located in the lung cancer critical region 3p21.3C, is a candidate tumor suppressor.
- Homologs of NPRL2/G21 exist across species, including yeast (NPR2), indicating conserved function.
Purpose of the Study:
- To provide further evidence for the tumor suppressor function of the NPRL2/G21 gene.
- To investigate the role of NPRL2/G21 in various tumor types and cancer cell lines.
Main Methods:
- Sequence analysis to determine the NPRL2/G21 protein's functional domains.
- Screening of cancer cell lines and tumor biopsies for NPRL2/G21 mutations and deletions.
- Assessing tumor cell growth and formation in vivo and in vitro using NPRL2/G21 transgenes.
Main Results:
- NPRL2/G21 encodes a protein with domains suggesting roles in DNA repair and cell cycle regulation.
- Inactivating mutations and homozygous deletions of NPRL2/G21 were identified in renal, lung, and cervical cancer cell lines.
- Tumor cell growth and formation were suppressed by NPRL2/G21 expression in vitro and in SCID mice.
Conclusions:
- NPRL2/G21 functions as a multiple tumor suppressor gene.
- Alterations in NPRL2/G21 are implicated in the development of various cancers.
- The NPRL2/G21 protein may be involved in DNA mismatch repair, cell cycle checkpoint signaling, and apoptosis.
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