Related Experiment Videos
Mutation of N-myc in mice: what does the phenotype tell us?
1Institute for Molecular Genetics, Baylor College of Medicine, Houston, TX 77030-3498.
Abstract:
Oncogenesis is manifested as uncontrolled cellular proliferation and in some situations a failure of normal differentiation in the transformed cell. This has led to speculation that the normal role of proto-oncogenes during development may be to mediate the relationship between proliferation and differentiation. The advent of gene targeting in ES cells allows the role oncogenes in development to be tested directly. Two recent studies have examined the phenotype of N-myc mutant mice generated by gene targeting. In both reports, the mutation is an embryonic lethal at 11.5 days of gestation confirming a critical role for this proto-oncogene in development and the inability of other members of the myc family to substitute functionally for N-myc. Although the phenotypes are similar in general outline, the two reports differ in the specifics of the morphological and histological abnormalities identified. The disparity may result from the mutation created, the genetic background of the mutant mice or the criteria used to determine abnormalities. Assuredly, there is valuable information to be gained about N-myc function from these mutant mice. However, these reports make it clear that morphological and histological abnormalities in N-myc mutant mice serve as a starting point rather than as an endpoint. The challenge now is to link the defect at the cellular level to the abnormalities at the physiological level.
Insights
Gene targeting of the N-myc proto-oncogene in mice revealed its essential role in embryonic development, with mutations causing embryonic lethality. This study highlights N-myc
Area of Science:
- Developmental Biology
- Cancer Research
- Genetics
Background:
- Oncogenesis involves uncontrolled cell proliferation and failed differentiation.
- Proto-oncogenes, like N-myc, are hypothesized to regulate proliferation and differentiation during development.
- Gene targeting in embryonic stem (ES) cells enables direct testing of oncogene roles in development.
Purpose of the Study:
- To investigate the developmental role of the N-myc proto-oncogene using gene targeting.
- To determine if other myc family members can functionally compensate for N-myc.
- To analyze the embryonic phenotype of N-myc mutant mice.
Main Methods:
- Gene targeting in ES cells to create N-myc mutations.
- Generation and analysis of N-myc mutant mice.
- Morphological and histological examination of embryonic tissues.
Main Results:
- N-myc mutations result in embryonic lethality by 11.5 days of gestation.
- The study confirms a critical role for N-myc in embryonic development.
- Other myc family members cannot functionally substitute for N-myc.
Conclusions:
- N-myc is essential for embryonic development, and its function cannot be replaced by other myc family members.
- Observed morphological and histological abnormalities in N-myc mutant mice are a starting point for further investigation.
- Future research should focus on linking cellular defects to physiological abnormalities in N-myc mutant mice.