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Paragenetic suppressors of suppressor genes--a new class of oncodeterminants
Abstract:
Impairment or loss of suppressor genes is a common event permitting the oncogene/suppressor gene machinery to develop neoplasia. Following prenatal treatment with X-rays and UV-B, we detected a new class of oncodeterminants that could not be specified as genes. This points to paragenetic elements that suppress suppressorgenes and thus provoke melanoma at earlier ages of onset as expected, with increased severity and increased number of incidences in successive generations, in the absence of further treatment. These elements were isolated from a xiphophorine DNA library by endogenously labeled long terminal repeats (LTR) of a xiphophorine retrovirus, and were characterized as retrotransposons by Southern and Northern blotting and reverse transcription/polymerase chain reaction and transient transfection studies, in situ hybridization, and sequencing. They appear in multiple copies in the telomeric chromosome regions, where they can extend. Three open reading frames (ORF) are flanked by LTR that contain genetically active regulatory elements, and are inducible by UV-B. ORF 3 shows nests of CG dinucleotides and CGG trinucleotides, which are reminiscent of CGG nests predisposing subjects to anticipation of certain human diseases involving tumor generation. Genetic anticipation as defined by Nettleship (1909) or Warren (1996) including an increase of neoplasia might represent an acquired genetic load in preceding generations, which might provide a lead to a molecular understanding of the worldwide increase of incidences of human tumor.
Insights
New paragenetic elements, identified as retrotransposons, suppress tumor suppressor genes, leading to earlier, more severe melanoma. These elements may explain the global increase in human tumor incidence.
Area of Science:
- Genetics
- Molecular Biology
- Cancer Research
Background:
- Neoplasia development is linked to the loss of suppressor genes.
- Prenatal exposure to X-rays and UV-B radiation can induce genetic alterations.
Purpose of the Study:
- To identify and characterize novel oncodeterminants induced by prenatal radiation.
- To investigate the role of these elements in melanoma development and inheritance.
Main Methods:
- Isolation of elements from a xiphophorine DNA library using retroviral long terminal repeats (LTRs).
- Characterization via Southern/Northern blotting, RT-PCR, transfection, in situ hybridization, and sequencing.
- Analysis of open reading frames (ORFs) and their regulatory elements.
Main Results:
- A new class of paragenetic elements, identified as retrotransposons, was detected.
- These retrotransposons are located in telomeric regions and are inducible by UV-B.
- ORF 3 contains CGG trinucleotide repeats, similar to those found in human diseases with anticipation.
Conclusions:
- These retrotransposons act as oncodeterminants by suppressing tumor suppressor genes.
- They contribute to earlier onset, increased severity, and intergenerational increase of melanoma.
- The findings may offer a molecular basis for understanding the rise in human tumor incidence and genetic anticipation.