Completed Pregnancy, Children & Inherited Conditions Genetics & Molecular Biology

Functional immunogenetics of fetal and placental development: the regulation of placentation by NK cell receptors and their trophoblast ligands

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AI plain-English summary

A mother’s immune cells and a fetus’s inherited genes can clash in ways that starve the baby of blood supply, triggering miscarriage, stillbirth, or pre-eclampsia. This project pinpoints the exact gene variants—in both mother and child—that cause these dangerous immune mismatches. The researchers have already linked specific combinations of maternal natural killer (NK) cell receptor genes and fetal MHC genes to reproductive failure. Now they will scan thousands of human pregnancies, correlating those genotypes with blood flow measurements taken via uterine artery Doppler scans. They will then engineer mice carrying the same human gene combinations to watch, in real time, how the immune cells fail to remodel the mother’s blood vessels, choking off the placenta. If successful, this work will turn a vague understanding of “immune rejection” into a precise genetic risk profile. Clinicians could eventually screen couples for dangerous gene combinations before pregnancy, or develop drugs that calm the specific NK cell receptors causing the damage. The research is fundamental—it asks how immune cells normally build a placenta, not just how they break it—but that mechanistic knowledge is the necessary foundation for any future therapy.

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We have shown that specific combinations of maternal and fetal immune genes predispose to reproductive failure. We will now identify the specific alleles that predispose to reproductive failure in humans. We will correlate, for the first time, maternal and fetal immune genotypes of large cohorts of normal and abnormal human pregnancies with blood flow dynamics at the experimentally inaccessible human maternal fetal-interface. Informed by these human genetic data we have designed experiments in mice to determine the downstream consequences of the interactions between maternal NK cell receptors (NKR) genes and fetal Major Histocompatibility Complex (MHC) genes on reproductive success. We will investigate in vivo exactly how these interactions control the mechanisms of vascular remodelling, placental development and fetal growth. A combination of cellular assays and transcriptome analysis will reveal the pathways activated in both maternal NK cells and fetal trophoblast cells upon int eractions with one another in both species. Bringing together human and mouse genetics, quantitative in vivo and in vitro assays and uterine artery Dopplers, this proposal is poised to generate data that will lead to new approaches for prevention and treatment of devastating conditions such as pre-eclampsia, recurrent miscarriage, fetal growth restriction and unexplained stillbirth.

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Researchers

Ashley Moffett (EPMC Awardee)

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Programme Grant

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