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Biology subjects

Gay, D.

Publications and source records attributed to Gay, D..

2 recordsLinked to original sources

Mammals adjust diel activity across gradients of urbanization

Time is a fundamental component of ecological processes. How animal behavior changes over time has been explored through well-known ecological theories like niche partitioning and predator-prey dynamics. Yet, changes in animal behavior within the shorter 24-hour light-dark cycle have largely gone unstudied. Understanding if an animal can adjust their temporal activity to mitigate or adapt to environmental change has become a recent topic of discussion and is important for effective wildlife management and conservation. While spatial habitat is a fundamental consideration in wildlife management and conservation, temporal habitat is often ignored. We formulated a temporal resource selection model to quantify the diel behavior of eight mammal species across ten U.S. cities. We found high variability in diel activity patterns within and among species and species-specific correlations between diel activity and human population density, impervious land cover, available greenspace, vegetation cover, and mean daily temperature. We also found that some species may modulate temporal behaviors to manage both natural and anthropogenic risks. Our results highlight the complexity with which temporal activity patterns interact with local environmental characteristics, and suggest that urban mammals may use time along the 24-hour cycle to reduce risk, adapt, and therefore persist in human-dominated ecosystems.

ecology↗

Two-pore channel 2 is a key regulator of adipocyte differentiation via the cAMP signaling pathway with calpain as downstream effector

We investigated whether the endolysosomal two-pore channel TPC2 is a mediator of adipocyte differentiation. We show that Tpcn2 mRNA is expressed transiently during induction of C3H10T1/2 mesenchymal stem cells to differentiate into adipocytes, and that this expression is triggered by cAMP. This is the first demonstration of a cell signaling pathway that can regulate TPC gene expression. We also identified an important functional role for TPC2 in adipocyte differentiation. First, ectopic TPC2 expression in C3H10T1/2 cells partially rescued the block to adipocyte differentiation caused by cAMP absence. Second, inhibition of endogenous TPC2 expression in primary preadipocytes substantially reduced their ability to differentiate into adipocytes. Finally, genetic variation at the Tpcn2 locus is associated with increased upper-body fat distribution in women concomitant with reduced Tpcn2 expression in abdominal adipose tissue. Our findings implicate TPC2 as an important mediator of adipogenesis and may aid identification of new drug targets for treatment of obesity.

cell biology↗