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Targeted suppression of E-cadherin gene expression in bovine preimplantation embryo by RNA interference technology
Korakot Nganvongpanit1, Heike Müller, Franca Rings
1Institute of Animal Science, Animal Breeding and Husbandry Group, University of Bonn, Endenicher Allee 15, Bonn, Germany.
Abstract:
RNA interference (RNAi) has become acknowledged as an effective and useful tool to study gene function in diverse groups of cells. We aimed to suppress the expression of the E-cadherin gene during in vitro development of bovine preimplantation embryos using RNAi approach. In this experiment the effect of microinjection of E-cadherin and Oct-4 (as control) double-stranded (ds) RNA on the mRNA and protein expression level of the target E-cadherin gene was investigated. For this, a 496 bp long bovine E-cadherin and 341 bp long Oct-4 dsRNA sample were prepared using in vitro transcription. In vitro produced bovine zygotes were categorized into four treatment groups including those injected with E-cadherin dsRNA, Oct-4 dsRNA, RNase-free water, and uninjected controls. While the injection of E-cadherin dsRNA resulted in the reduction of E-cadherin mRNA and protein levels at the morula and blastocyst stage, the transcript and protein product remained unaffected in the Oct-4 dsRNA, water injected and uninjected control groups. The relative abundance of E-cadherin mRNA in the E-cadherin dsRNA injected morula stage embryos was reduced by 80% compared to the control group (P < 0.05). The Western blot analysis also showed a significant decrease in the E-cadherin protein (119 kDa) in E-cadherin dsRNA injected embryos compared to the other three groups. Microinjection of E-cadherin dsRNA has resulted only 22% blastocyst rate compared to 38%-40% in water injected and uninjected controls. In conclusion, our results indicated the suppression of E-cadherin mRNA and protein has resulted in lower blastocyst rate and the RNAi technology is a promising approach to study the function of genes in early bovine embryogenesis.
Insights
RNA interference (RNAi) effectively suppressed E-cadherin gene expression in bovine embryos. This led to reduced mRNA and protein levels, significantly lowering the blastocyst rate, highlighting RNAi
Area of Science:
- Reproductive Biology
- Molecular Biology
- Developmental Biology
Background:
- RNA interference (RNAi) is a valuable tool for studying gene function.
- E-cadherin plays a crucial role in embryonic development.
- Understanding gene function in early bovine embryogenesis is vital for reproductive technologies.
Purpose of the Study:
- To investigate the efficacy of RNA interference (RNAi) in suppressing E-cadherin gene expression in in vitro-developed bovine preimplantation embryos.
- To assess the impact of E-cadherin suppression on mRNA and protein levels during early bovine embryogenesis.
Main Methods:
- Microinjection of double-stranded RNA (dsRNA) targeting E-cadherin and Oct-4 (control) into in vitro-produced bovine zygotes.
- Quantification of E-cadherin mRNA levels using quantitative PCR.
- Analysis of E-cadherin protein expression via Western blot.
- Evaluation of blastocyst development rates across different treatment groups.
Main Results:
- Microinjection of E-cadherin dsRNA significantly reduced E-cadherin mRNA by 80% and protein levels in bovine embryos at morula and blastocyst stages.
- E-cadherin suppression resulted in a decreased blastocyst formation rate (22%) compared to control groups (38-40%).
- Oct-4 dsRNA, RNase-free water injection, and uninjected controls showed no significant impact on E-cadherin expression or blastocyst rates.
Conclusions:
- RNA interference is a promising approach for functional gene analysis in early bovine embryogenesis.
- Suppression of E-cadherin expression negatively affects bovine preimplantation embryo development, specifically impacting blastocyst formation.
- The study validates the use of RNAi for targeted gene knockdown in bovine embryos.
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