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Effects of Crotonylation on Reprogramming of Cashmere Goat Somatic Cells with Different Differentiation Degrees
Wennan Li1, Wei Yan1, Fei Hao1
1State Key Laboratory of Reproductive Regulation & Breeding of Grassland Livestock, Inner Mongolia University, Hohhot 010021, China.
Abstract:
Failure in the epigenetic reprogramming of somatic cells is considered the main reason for lower cloned embryo development efficiency. Lysine crotonylation (Kcr) occupies an important position in epigenetic modification, while its effects on somatic cell reprogramming have not been reported. In this study, we detected the influence of sodium crotonate (NaCr) on the Kcr levels in three types of somatic cells (muscle-derived satellite cells, MDSCs; fetal fibroblast cells, FFCs; and ear tip fibroblast cells, EFCs). The three types of somatic cells were treated with NaCr for cloned embryo construction, and the cleavage rates and Kcr, H3K9cr, and H3K18cr levels in the cloned embryos were analyzed. The results showed that the abnormal levels of Kcr, H3K9cr, and H3K18cr were corrected in the treatment groups. Although there was no significant difference in the cloned embryo cleavage rate in the FFC treatment group, the cleavage rates of the cloned embryos in the MDSCs and EFCs treatment groups were increased. These findings demonstrated that the Kcr level was increased with NaCr treatment in somatic cells from Cashmere goat, which contributed to proper reprogramming. The reprogramming of somatic cells can be promoted and cloned embryo development can be improved through the treatment of somatic cells with NaCr.
Insights
Sodium crotonate (NaCr) enhances epigenetic reprogramming in goat somatic cells by increasing lysine crotonylation (Kcr) levels. This improves cloned embryo development, particularly in muscle-derived satellite cells and ear tip fibroblast cells.
Area of Science:
- Epigenetics
- Reproductive Biology
- Animal Science
Background:
- Epigenetic reprogramming failure limits cloned embryo development efficiency.
- Lysine crotonylation (Kcr) is a crucial epigenetic modification, but its role in somatic cell reprogramming is unexplored.
Purpose of the Study:
- To investigate the effect of sodium crotonate (NaCr) on Kcr levels in goat somatic cells.
- To assess the impact of NaCr treatment on cloned embryo development and epigenetic modifications.
Main Methods:
- Treated three types of goat somatic cells (MDSCs, FFCs, EFCs) with NaCr.
- Constructed cloned embryos and analyzed cleavage rates.
- Measured Kcr, H3K9cr, and H3K18cr levels in cloned embryos.
Main Results:
- NaCr treatment corrected abnormal Kcr, H3K9cr, and H3K18cr levels in cloned embryos.
- Increased cloned embryo cleavage rates were observed in MDSCs and EFCs treatment groups.
- NaCr treatment elevated Kcr levels in somatic cells, promoting reprogramming.
Conclusions:
- Lysine crotonylation (Kcr) is vital for effective somatic cell reprogramming.
- Sodium crotonate (NaCr) treatment can enhance epigenetic reprogramming and improve cloned embryo development in goats.
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