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Biology subjects

Tournaye, H.

Publications and source records attributed to Tournaye, H..

2 recordsLinked to original sources

Lineage segregation in human pre-implantation embryos is specified by YAP1 and TEAD1

We know that polarity and YAP1 play a key role in trophectoderm initiation in compacted human embryos, however we know little about the TEAD family of transcription factors that become activated by YAP1 and especially if they play a role during epiblast and primitive endoderm formation. Here we show that compaction occurs heterogeneously between the 8- and 16-cell stages. While 8-cell stage blastomeres are not yet polarized, polarized outer cells and non-polarized inner cells arise in compacted 16-cell stage embryos. While trophectoderm specifiers TEAD1, YAP1 and GATA3 mostly co-localise in the nuclei of polarized outer/trophectoderm cells, they are also found in some cells of compacting embryos before polarity is established indicating that differentiation into trophectoderm cells can be initiated independently of polarity. In the inner cell mass, TEAD1 and YAP1 also distinguish GATA4 positive cells in a salt-and-pepper distribution and in the sorted primitive endoderm cells. Our detailed roadmap on polarization, compaction, position and lineage segregation events during human preimplantation development paves the road for further functional studies. Fundamental knowledge of lineage segregation events will eventually explain how and why embryos fail to develop further before or during implantation.

developmental biology↗

Mitochondrial DNA variants segregate during human preimplantation development into genetically different cell lineages that are maintained postnatally

Humans present remarkable mitochondrial DNA (mtDNA) variant mosaicism, not only across tissues but even across individual cells within one person. The timing of the first appearance of this mosaicism has not yet been established. In this study, we hypothesized it occurs during preimplantation development. To investigate this, we deep-sequenced the mtDNA of 254 oocytes from 85 donors, 158 single blastomeres of 25 day-3 embryos, 17 inner cell mass and trophectoderm samples of 7 day-5 blastocysts, 142 bulk DNA and 68 single cells of different adult tissues. We found that day-3 preimplantation embryos already present blastomeres that carry variants unique to that cell, showing that the first events of mtDNA mosaicism happen very early in human development. We classified the mtDNA variants based on their recurrence or uniqueness across sibling oocytes and embryos, and between single cells and samples from the same embryos or adult individuals. Variants that recurred across samples had higher heteroplasmic loads and more frequently resulted in synonymous changes or were located in non-coding regions than variants that were unique to one oocyte or single embryonic cell. These differences were maintained through developmental stages, suggesting that the mtDNA mosaicism arising in preimplantation development is maintained into adulthood. Further, the results support a model in which close clustering of mitochondria carrying specific mtDNA variants in the ooplasm leads to asymmetric distribution of these mitochondria throughout the cell divisions of the preimplantation embryo, resulting in the appearance of the first form of mtDNA mosaicism in human development.

genetics↗