Isoform-Specific Effects of Wild-Type Ras Genes on Carcinogen-Induced Lung Tumorigenesis in Mice
Jamie D Weyandt1, John M Carney2, Elizabeth N Pavlisko2
1Department of Pharmacology & Cancer Biology, Duke University Medical Center, Durham, North Carolina, United States of America.
Abstract:
The gene KRAS is commonly mutated in lung cancer to encode a constitutively active and oncogenic protein that is well established to initiate and maintain lung tumorigenesis. However, the remaining wild-type KRAS protein, or the other family members HRAS and NRAS, can still be activated in the presence of oncogenic KRAS. Moreover, loss of any one of these three genes has been shown to increase the sensitivity of mice to the carcinogen urethane, which induces Kras mutation-positive early lung lesions. To determine the contribution of progressively disrupting Hras and Nras genes on urethane lung tumorigenesis, mice with different combinations of wild-type and null alleles of Hras and Nras were exposed with urethane and tumor burden was assessed. As previously reported, loss of one allele of Hras increased the sensitivity of mice to this carcinogen, and this effect was further exacerbated by the loss of the second Hras allele. However, loss of one or both alleles of Nras failed to alter tumor burden, either in the absence or presence of Hras, after exposure to urethane. Additionally, no obvious difference between lung lesions in mice with wild-type versus null alleles was detected, suggesting that wild-type Ras proteins may exert a tumor suppressive effects at the time of initiation, although other interpretations are certainly possible. In summary, these data suggest that in some genetic backgrounds inactivation of different wild-type Ras genes can have different effects on urethane-induced lung tumorigenesis.
Insights
Disrupting Hras and Nras genes impacts urethane-induced lung tumors. Loss of Hras alleles increases tumor sensitivity, while Nras gene inactivation shows no significant effect on lung tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- KRAS mutations drive lung cancer initiation and progression.
- Wild-type RAS proteins (KRAS, HRAS, NRAS) can be activated alongside oncogenic KRAS.
- Loss of RAS genes increases susceptibility to urethane-induced lung tumors.
Purpose of the Study:
- To investigate the role of Hras and Nras gene disruption in urethane-induced lung tumorigenesis.
- To determine how combined loss of Hras and Nras alleles affects tumor development.
Main Methods:
- Mice with varying combinations of Hras and Nras alleles (wild-type and null) were used.
- Mice were exposed to the carcinogen urethane.
- Tumor burden and lung lesions were assessed to evaluate tumorigenesis.
Main Results:
- Loss of one Hras allele increased urethane sensitivity, with further exacerbation upon loss of the second allele.
- Inactivation of Nras alleles did not alter tumor burden, irrespective of Hras status.
- No significant differences in lung lesions were observed between wild-type and null allele mice, suggesting potential tumor suppressive roles.
Conclusions:
- Progressive disruption of Hras exacerbates urethane-induced lung tumorigenesis.
- Nras gene inactivation does not significantly influence urethane-induced lung tumor development.
- Wild-type RAS proteins might have tumor-suppressive roles during tumor initiation, depending on the genetic context.
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