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Germ cell-specific proteins interact with the 3' untranslated regions of Prm-1 and Prm-2 mRNA
M A Fajardo1, K A Butner, K Lee
1Department of Genetics, University of Washington, Seattle 98195.
Abstract:
The testis-specific mouse protamine genes (Prm-1 and Prm-2) are transcribed in haploid round spermatids, their mRNAs stored as cytoplasmic ribonucleoprotein particles and translated about 1 week later in elongating spermatids. We have compared the in vitro translational efficiencies of deproteinized Prm-1 mRNA isolated from purified populations of germ cells and found that Prm-1 mRNA from round spermatids translates as efficiently as Prm-1 mRNA from elongating spermatids, suggesting that translation of Prm-1 mRNA is normally repressed in round spermatids. Previous studies in transgenic mice have shown that the 3' UTR of Prm-1 mRNA is necessary and sufficient for its translational control (Braun et al., 1989). In this manuscript, we have used an RNA band shift assay to identify an activity, present in cytoplasmic fractions of meiotic spermatocytes and postmeiotic round spermatids, that binds the 3'UTRs of both Prm-1 and Prm-2 mRNA. We have used 3' UTR deletion variants to map the binding site to a 22-nt region within the Prm-1 3' UTR and to a 20-nt region within the Prm-2 3' UTR. uv cross-linking of the RNA band shift activities detected with the Prm-1 and Prm-2 3' UTRs generated the same two RNA/protein complexes of 53 and 55 kDa. The presence of the binding activity in the cell type and subcellular compartment associated with Prm-1 and Prm-2 mRNA storage suggest that the activity may be actively engaged in translational repression of these mRNAs.
Insights
Testis-specific protamine mRNAs (Prm-1 and Prm-2) are translationally repressed in round spermatids. A cytoplasmic RNA-binding activity in these cells binds Prm-1 and Prm-2 3'UTRs, suggesting it mediates this repression.
Area of Science:
- Molecular Biology
- Reproductive Biology
- Gene Regulation
Background:
- Testis-specific protamine genes (Prm-1, Prm-2) are crucial for sperm development.
- Their mRNAs are stored in round spermatids and translated later in elongating spermatids, implying translational control.
Purpose of the Study:
- To investigate the mechanism of translational repression of Prm-1 and Prm-2 mRNAs in mouse spermatids.
- To identify factors responsible for controlling Prm-1 and Prm-2 mRNA translation.
Main Methods:
- In vitro translation assays using deproteinized Prm-1 mRNA.
- RNA band shift assays with 3' UTRs of Prm-1 and Prm-2 mRNA.
- UV cross-linking to identify RNA-binding proteins.
Main Results:
- Prm-1 mRNA from round spermatids shows efficient in vitro translation, indicating active repression in vivo.
- A cytoplasmic activity binding to the 3' UTRs of both Prm-1 and Prm-2 mRNAs was identified.
- Deletion analysis mapped binding sites to specific regions in the 3' UTRs.
- UV cross-linking revealed two specific RNA/protein complexes of 53 and 55 kDa.
Conclusions:
- A novel RNA-binding activity present in meiotic and postmeiotic spermatids likely mediates the translational repression of Prm-1 and Prm-2 mRNAs.
- This activity may play a critical role in regulating protamine synthesis during spermiogenesis.