Pregnancy damps thermoregulatory rhythms across timescales through neural estrogen signaling in mice
Laura R. Cortes, Lingyun Xiong, Adriana R. Vree, Fernando M. C. V. Reis, Natalie Kim, Bing Feng, Mia R. Hansen, Sakina Rashid, Norma P. Sandoval, Julissa I. Lopez, Yanlin He, Avishek Adhikari, J. Edward van Veen, Alan Garfinkel, Eric J. Deeds, Christopher S. Colwell, Stephanie M. Correa
Pregnancy induces widespread physiological adaptations, including changes to core temperature (T
c
), that may reduce fetal heat stress and enhance metabolic stability. Despite the potential importance of maternal thermoregulatory changes, the neural mechanisms organizing homeostatic rhythms during pregnancy remain poorly understood. Here, we demonstrate that pregnancy profoundly reshapes thermoregulatory dynamics across diurnal and ultradian timescales and that these changes are partially orchestrated by estrogen receptor alpha (ERα) signaling in neurons of the medial preoptic area (MPO
ERɑ
). Using in vivo calcium recordings of MPO
ERɑ
neurons, we show that MPO
ERɑ
neural activity is synchronized with T
c
oscillations in nonpregnant mice. Notably, this synchronization is lost during pregnancy and reemerges after parturition, indicating that MPO
ERɑ
activity and T
c
are synchronized in a manner that is dependent on reproductive state. Using chemogenetic inhibition, we show that MPO
ERɑ
neurons are required for the lowering of T
c
in late pregnancy. Using a genomic estrogen signaling reporter, we demonstrate that MPO
ERɑ
neurons exhibit enhanced estrogen signaling in late pregnancy. This estrogen signaling helps coordinate maternal T
c
changes, as selectively ablating ERα expression in the MPO increased T
c
and its circadian and ultradian rhythmicity. Finally, we show that manipulating MPO
ERɑ
cell activity and MPO