Back

Targeted disruption of Pparγ1 promotes trophoblast endoreplication in the murine placenta

Nakano, T.; Aochi, H.; Hirasaki, M.; Takenaka, Y.; Fujita, K.; Soma, H.; Kamezawa, H.; Koizumi, T.; Okuda, A.; Murakoshi, T.; Shimada, A.; Inoue, I.

2020-05-29 developmental biology
10.1101/2020.05.28.120691 bioRxiv
Show abstract

In murine placentas, peroxisome proliferator-activated receptor (PPAR) {gamma}1, a nuclear receptor, is abundant at the late stage of pregnancy (E15-E16), but its functional roles are still elusive because PPAR{gamma}-full knockout embryos die early (E10). We generated mice disrupted in only Ppar{gamma}1, one of the two major mRNA splicing variants of PPAR{gamma}1. Ppar{gamma}1- knockout embryos developed normally until 15.5 dpc, but their growth was retarded thereafter and they did not survive. At 15.5 dpc, in the wild-type placentas, intense PPAR{gamma}-immunostaining was detected in sinusoidal trophoblast giant cells (sTGCs), a cell lineage that coordinates the maternal blood microcirculation in the labyrinth, whereas they were absent in the knockouts. Although Ppar{gamma}1-knockout placentas were normal in morphology, we observed severely dilated maternal blood sinuses in the labyrinth. The Ppar{gamma}1-knockout sTGCs had abnormally large nuclei, an enhanced endocycling phenotype, indicating insufficient differentiation. RNA-sequencing of the placentas showed increased expression of genes coding for nucleosome assembly factors. Labyrinthine gene expressions for atypical E2Fs and cyclin E, key drivers for endocycling, were increased >3-fold. These findings suggested that PPAR{gamma}1 plays a key role in endocycle termination.

Matching journals

The top 3 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.