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Updated: Sep 2, 2025

Blastomere Explants to Test for Cell Fate Commitment During Embryonic Development
Published on: January 26, 2013
The second polar body contributes to the fate asymmetry in the mouse embryo
Hongbin Jin1, Yang Han1, Huasong Wang1
1Laboratory of Molecular Developmental Biology, State Key Laboratory of Membrane Biology, Tsinghua-Peking Center for Life Sciences, School of Life Sciences, Tsinghua University, Beijing 100084, China.
Abstract:
The polar bodies (PBs) are extruded microcells during oocyte meiosis and generally regarded as inessentials for embryonic development. Therefore, PBs have been widely used as important materials for pre-implantation genetic diagnosis in human. Here we report that the second PB (PB2) in the mouse zygote may play roles in cell-fate specification and post-implantation development. A subset of mRNAs encoding pluripotency-related factors are enriched in PB2. Nascent proteins may be synthesized in PB2 after fertilization and transport from PB2 to the zygote before the two-cell stage. The PB2-attached blastomere (pbB) at the two-cell stage, compared to the other blastomere (npbB), likely contributes more descendants to the inner cell mass (ICM) lineage in the blastocyst. Removal of PB2 from the zygote or transient blockage of material exchange between PB2 and the zygote by nocodazole treatment appears to cause a loss of the ICM fate bias of pbB. PB2 removal or nocodazole treatment also results in abnormal post-implantation development. Injection of PB2 lysate into pbB of PB2-removed two-cell-stage embryos may reset the cell-fate preference and rescue post-implantation development. Our data collectively suggest that PB2 would demarcate the earliest cell-fate asymmetry of the mouse zygote and be required for post-implantation development.
Insights
The second polar body (PB2) in mouse zygotes, previously considered non-essential, contains factors crucial for early embryonic development and cell-fate specification, impacting post-implantation development.
Area of Science:
- Developmental Biology
- Cell Biology
- Genetics
Background:
- Polar bodies (PBs) are microcells extruded during oocyte meiosis.
- PBs are typically considered non-essential for embryonic development.
- PBs are utilized for pre-implantation genetic diagnosis.
Purpose of the Study:
- To investigate the potential roles of the second polar body (PB2) in mouse zygote cell-fate specification.
- To determine the impact of PB2 on post-implantation development.
Main Methods:
- Analysis of mRNA enrichment in PB2.
- Investigation of protein synthesis and transport from PB2.
- Experimental manipulation of PB2 (removal or nocodazole treatment).
- Assessment of blastomere contribution to the inner cell mass (ICM).
- Rescue experiments using PB2 lysate injection.
Main Results:
- PB2 is enriched with mRNAs encoding pluripotency factors.
- PB2 may synthesize and transport proteins to the zygote.
- PB2 influences the contribution of the attached blastomere (pbB) to the ICM lineage.
- PB2 removal or impaired material exchange disrupts ICM fate bias and post-implantation development.
- PB2 lysate injection can rescue developmental defects.
Conclusions:
- PB2 plays a significant role in establishing early cell-fate asymmetry in mouse zygotes.
- PB2 is essential for successful post-implantation development.
- PB2 contributes to the developmental potential of the zygote beyond its traditional role.
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