Back

Inhibition of NFAT promotes loss of tissue resident uterine natural killer cells and attendant pregnancy complications in humans

Asiimwe, R.; Knott, B.; Greene, M. E.; Wright, E.; Bell, M.; Epstein, D.; Yates, S. D.; Cheung, M. D.; Gonzalez, M. V.; Fry, S.; Boydston, E.; Clevenger, S.; Locke, J. E.; George, J. F.; Burney, R.; Arora, N.; Duncan, V. E.; Richter, H. E.; Gunn, D.; Freud, A. G.; Little, S. C.; Porrett, P. M.

2024-03-12 immunology
10.1101/2024.03.07.583906 bioRxiv
Show abstract

Uterine natural killer cells (uNKs) are a tissue resident lymphocyte population that are critical for pregnancy success. Although mouse models have demonstrated that NK deficiency results in abnormal placentation and poor pregnancy outcomes, the generalizability of this knowledge to humans remains unclear. Here we identify uterus transplant (UTx) recipients as a human population with reduced uNK cells and altered pregnancy phenotypes. We show that the NK reduction in UTx correlates with impaired transcriptional programming of NK tissue residency arising from the inhibition of NFAT-mediated signaling. Our observations suggest that NFAT-dependent genes modulate multiple molecular tissue residency programs in uNKs. These include early residency programs involving AP-1-family transcription factors and TGF-{beta}-mediated upregulation of surface integrins. Collectively, our data identify a previously undescribed role for NFAT in uterine NK tissue residency and provide novel mechanistic insights into the biologic basis of pregnancy complications due to alteration of tissue resident NK subsets in humans. One Sentence SummaryRole of NFAT in uterine NK cell tissue residency

Matching journals

The top 4 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.