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Updated: Jun 10, 2026

Optimized Analysis of Proteins from Xenopus Oocytes and Embryos by Immunoblotting
Published on: September 19, 2025
KHDC1B is a novel CPEB binding partner specifically expressed in mouse oocytes and early embryos
Congli Cai1, Keiko Tamai, Kathleen Molyneaux
1Department of Genetics, School of Medicine, Case Western Reserve University, Cleveland, OH 44106, USA. cxc242@case.edu
Abstract:
mRNAs required for meiotic maturation and early embryonic development are stored in growing oocytes. These transcripts are translationally repressed until hormonal cues trigger ovulation. Errors in translation underlie some cases of human infertility and are associated with ovarian germ cell tumors. However, it remains unclear how maternal transcripts are kept quiescent in mammals. This study describes a potential translational regulator, KHDC1B. KHDC1B is a member of a small family of KH-domain containing proteins specific to eutherian mammals. Two family members, KHDC1A and 1B, are highly expressed in oocytes. KHDC1A and 1B bind polyU agarose and form oligomers like other KH-domain proteins. The functions of these proteins were tested by expression in Xenopus embryos. KHDC1A caused cell death, whereas KHDC1B caused cleavage arrest. This arrest phenotype was rescued by coexpression of the mouse translational regulator cytoplasmic polyadenylation binding protein 1 (mCPEB1). Coimmunoprecipitation and coimmunostaining experiments confirmed the functional interaction between KHDC1B and mCPEB1. Finally, KHDC1B levels and binding partners were shown to fluctuate with the cell cycle. KHDC1B, via its interaction with mCEPB1, may regulate translation of mRNA targets required for oocyte maturation.
Insights
KHDC1B is a novel protein that may regulate maternal mRNA translation during oocyte maturation. This finding could offer new insights into infertility and ovarian germ cell tumors.
Area of Science:
- Reproductive Biology
- Molecular and Cellular Biology
- Developmental Biology
Background:
- Maternal mRNAs in oocytes are translationally repressed until ovulation.
- Errors in maternal mRNA translation are linked to infertility and ovarian germ cell tumors.
- The mechanisms of maternal transcript quiescence in mammals are not fully understood.
Purpose of the Study:
- To identify and characterize novel translational regulators of maternal mRNAs in oocytes.
- To investigate the function of KHDC1B, a KH-domain containing protein highly expressed in oocytes.
Main Methods:
- Expression of KHDC1A and KHDC1B in Xenopus embryos.
- Coimmunoprecipitation and coimmunostaining to confirm protein interactions.
- Cell cycle analysis of KHDC1B levels and binding partners.
Main Results:
- KHDC1B expression in Xenopus embryos caused cleavage arrest, which was rescued by mCPEB1.
- KHDC1B functionally interacts with cytoplasmic polyadenylation binding protein 1 (mCPEB1).
- KHDC1B levels and binding partners change throughout the cell cycle.
Conclusions:
- KHDC1B may act as a translational regulator of maternal mRNAs.
- KHDC1B's interaction with mCPEB1 is crucial for its function in oocyte maturation.
- Understanding KHDC1B's role could illuminate causes of infertility and ovarian germ cell tumors.
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