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Mediation of the Acute Stress Response by the Skeleton. | LitMetric

AI Article Synopsis

  • The text suggests that bones evolved to help bony vertebrates react to danger more effectively.
  • It highlights the role of a bone-derived protein called osteocalcin in triggering an acute stress response (ASR) when exposed to stressors in mice, rats, and humans.
  • The study proposes that osteocalcin acts as an endocrine signal, enabling vertebrates to manage their stress responses better by affecting nervous system activity.

Article Abstract

We hypothesized that bone evolved, in part, to enhance the ability of bony vertebrates to escape danger in the wild. In support of this notion, we show here that a bone-derived signal is necessary to develop an acute stress response (ASR). Indeed, exposure to various types of stressors in mice, rats (rodents), and humans leads to a rapid and selective surge of circulating bioactive osteocalcin because stressors favor the uptake by osteoblasts of glutamate, which prevents inactivation of osteocalcin prior to its secretion. Osteocalcin permits manifestations of the ASR to unfold by signaling in post-synaptic parasympathetic neurons to inhibit their activity, thereby leaving the sympathetic tone unopposed. Like wild-type animals, adrenalectomized rodents and adrenal-insufficient patients can develop an ASR, and genetic studies suggest that this is due to their high circulating osteocalcin levels. We propose that osteocalcin defines a bony-vertebrate-specific endocrine mediation of the ASR.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6834912PMC
http://dx.doi.org/10.1016/j.cmet.2019.08.012DOI Listing

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