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Biology subjects

Friday, W. B.

Publications and source records attributed to Friday, W. B..

2 recordsLinked to original sources

Homocysteine-induced endoplasmic reticulum stress activates FGF21 via CREBH, resulting in browning and atrophy of white adipose tissue in Bhmt knockout mice.

Betaine-homocysteine methyltransferase (BHMT) catalyzes the transfer of methyl-groups from betaine to homocysteine (Hcy) producing methionine and dimethylgycine. In this work, we characterize Bhmt wildtype (WT) and knockout (KO) mice that were fully backcrossed to a C57Bl6/J background. Consistent with our previous findings, Bhmt KO mice had decreased body weight, fat mass and adipose tissue weight compared to WT. Histological analyses and gene expression profiling indicate that adipose browning was activated in KO mice and contributed to the adipose atrophy observed. BHMT is not expressed in adipose tissue but is abundant in liver, thus, a signal must be originating from the liver that modulates adipose tissue. We found that, in Bhmt KO mice, homocysteine-induced endoplasmic reticulum (ER) stress, with activation of hepatic transcription factor cyclin AMP response element binding protein (CREBH), mediated an increase in hepatic and plasma concentrations of fibroblast growth factor 21 (FGF21), which is known to induce adipose browning. CREBH binds to the promoter regions of FGF21 to activate its expression. Taken together, our data indicate that deletion of a single gene in one-carbon metabolism modifies adipose biology and energy metabolism. It would be interesting to determine whether people with functional polymorphisms in BHMT exhibit a similar adipose atrophy phenotype.

cell biology↗

Prenatal exposure to the probiotic Lactococcus lactis decreases anxiety-like behavior and modulates cortical cytoarchitecture in a sex specific manner.

Development of the cerebral cortex may be influenced by the composition of the maternal gut microbiota. To test this possibility, we administered probiotic Lactococcus lactis in the drinking water to mouse dams from day 10.5 of gestation and until pups reached postnatal day 1 (P1). Pups were assessed in a battery of behavioral tests starting at 10 weeks old. We found that females, but not males, exposed to probiotic during prenatal development spent more time in the center of the open field and also displayed decreased freezing time in cue associated learning, compared to controls. Furthermore, we found that probiotic exposure changes the densities of cortical neurons and increases the density of blood vessels in the cortical plate of P1 pups. Sex-specific differences were observed in the numbers of mitotic neural progenitor cells, which were increased in probiotic exposed female pups. In addition, we found that probiotics treatment throughout pregnancy significantly increased plasma oxytocin levels in mouse dams, but not in the offspring. These results suggest that exposure of naive, unstressed dams to probiotic may exert sex-specific long-term effects on cortical development and anxiety related behavior in the offspring.

neuroscience↗