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A transgene-induced mitotic arrest mutation in the mouse allelic with Oligosyndactylism
1Department of Pediatrics, Saint Louis University Health Sciences Center, Missouri 63110, USA. pravtcdd@sluvca.slu.edu
Abstract:
Oligosyndactylism (Os) is a radiation-induced mutation on mouse chromosome 8 associated with early postimplantation lethality in homozygotes and abnormal development of the limbs and kidneys in heterozygotes. The recessive lethal effect of Os is due to a mitotic block of the embryonic cells that becomes apparent at the blastocyst stage, but it is not known if the heterozygous effect of Os is due to haploinsufficiency of the gene responsible for the mitotic arrest, or is due to mutation(s) of other gene(s). We have recently described a transgene-induced recessive mutation, 94-A/K, that results in early postimplantation death of the embryos, and we have mapped this mutation to the same region of chromosome 8 where Os has been assigned. On the basis of complementation tests between transgenic and Os/+ mice, in vitro growth characteristics and increased mitotic index of 94-A/K embryos, and molecular structural analysis of 94-A and 94-K transgenic and Os/+ mice, we conclude that the 94-A/K mutation represents a new allele of Os. This insertional mutation should facilitate the isolation of a mammalian gene essential for normal progression of the cell cycle beyond metaphase.
Insights
Oligosyndactylism (Os) causes early embryonic death in mice. A new mutation, 94-A/K, identified on chromosome 8, is a new allele of Os, aiding in the study of cell cycle regulation.
Area of Science:
- Genetics
- Developmental Biology
- Molecular Biology
Background:
- Oligosyndactylism (Os) is a mutation causing embryonic lethality and developmental abnormalities.
- The exact genetic cause of Os heterozygote effects remains unclear.
- A transgene-induced mutation, 94-A/K, was identified with similar lethal effects.
Purpose of the Study:
- To determine if the 94-A/K mutation is a new allele of Oligosyndactylism (Os).
- To investigate the genetic basis of Os-related developmental defects.
- To identify genes critical for cell cycle progression.
Main Methods:
- Complementation tests between transgenic (94-A/K) and Os/+ mice.
- In vitro growth analysis of 94-A/K embryos.
- Molecular structural analysis of transgenic and Os/+ mice.
Main Results:
- The 94-A/K mutation was mapped to the same region as Os on mouse chromosome 8.
- Complementation tests confirmed 94-A/K as a new allele of Os.
- Analysis indicated the mutation affects cell cycle progression.
Conclusions:
- The 94-A/K mutation is a new allele of Oligosyndactylism (Os).
- This finding facilitates the isolation of a gene crucial for cell cycle regulation.
- Understanding Os may shed light on developmental disorders.