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Published on: September 27, 2015
Somatic-cell expression of the mos protooncogene is cell-cycle regulated - highest RNA expression in the g2 phase
1UNIV TEXAS,MD ANDERSON CANC CTR,DEPT MOLEC PATHOL,1515 HOLCOMBE BLVD,HOUSTON,TX 77030.
Abstract:
c-mos expression, which occurs at relatively high levels in male and female germ cells, plays an important role in oocyte meiotic maturation. The c-mos proto-oncogene product (c-Mos) is necessary and sufficient to initiate meiosis. It is also an essential component of the cytostatic factor (CSF), which is responsible for arresting vertebrate oocytes at the second meiotic metaphase possibly via stabilization of the maturation promoting factor (MPF). However, much less is understood about c-mos expression and function in somatic cells. We report here that c-mos transcripts can be detected in NIH 3T3 cells by the highly sensitive RNA-PCR method and by RNase protection assays. We found that expression of c-mos RNA is tightly controlled in a cell cycle-dependent manner with highest levels of transcripts (approximately 5 copies per cell) present in the G2 phase. The level of c-mos RNA in synchronized G0/G1 cells was undetectable, and that in S phase cells was extremely low. Similarly, only very low levels of c-mos RNA were detected in nocodazole-arrested M phase cells. The presence of contaminating G2 cells in the synchronized S phase: and M phase populations as well as unsynchronized populations' could 'account for the very low levels of c-mos transcripts detected and supports the interpretation that c-mos RNA is absent in, all phases except G2. These results establish that c-mos expression is not restricted to germ cells, but instead indicate that c-mos RNA expression occurs during the G2 stage of the cell cycle in somatic cells. As in meiosis, c-mos may have a similar function in regulating cell cycle events in somatic cells particularly in controlling entry into mitosis via activation of MPF.
Insights
The c-mos proto-oncogene is expressed in somatic cells, specifically during the G2 phase of the cell cycle. This finding suggests c-mos may regulate cell cycle events, similar to its role in meiosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncogenes
Background:
- The c-mos proto-oncogene product (c-Mos) is crucial for oocyte meiotic maturation and arrests cells in metaphase II.
- Its role in somatic cells remains less understood, despite its known function in germ cells.
Purpose of the Study:
- To investigate the expression and cell cycle-dependent behavior of c-mos in somatic cells.
- To determine if c-mos expression is limited to germ cells or also occurs in other cell types.
Main Methods:
- Utilized sensitive RNA-PCR and RNase protection assays to detect c-mos transcripts.
- Employed synchronized NIH 3T3 cell populations across different cell cycle phases (G0/G1, S, G2, M).
Main Results:
- c-mos transcripts were detected in NIH 3T3 somatic cells.
- Expression was tightly regulated, with highest levels observed during the G2 phase.
- c-mos RNA was undetectable in G0/G1, very low in S phase, and low in M phase cells.
Conclusions:
- c-mos expression is not exclusive to germ cells; it occurs in somatic cells during the G2 phase.
- c-mos may play a role in regulating cell cycle progression in somatic cells, potentially by controlling entry into mitosis via MPF activation.
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