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在小鼠中,聚集亚稳态可促进体温的动态变化,并受 Shank3b 和 Trpm8 突变的调节。

Huddling substates in mice facilitate dynamic changes in body temperature and are modulated by Shank3b and Trpm8 mutation.

机构信息

Department of Zoology and Physiology, University of Wyoming, Laramie, WY, USA.

University of Wyoming Sensory Biology Center, Laramie, WY, USA.

出版信息

Commun Biol. 2024 Sep 20;7(1):1186. doi: 10.1038/s42003-024-06781-7.

Abstract

Social thermoregulation is a means of maintaining homeostatic body temperature. While adult mice are a model organism for studying both social behavior and energy regulation, the relationship between huddling and core body temperature (Tb) is poorly understood. Here, we develop a behavioral paradigm and computational tools to identify active-huddling and quiescent-huddling as distinct thermal substates. We find that huddling is an effective thermoregulatory strategy in female but not male groups. At 23 °C (room temperature), but not 30 °C (near thermoneutrality), huddling facilitates large reductions in Tb and Tb-variance. Notably, active-huddling is associated with bidirectional changes in Tb, depending on its proximity to bouts of quiescent-huddling. Further, group-housed animals lacking the synaptic scaffolding gene Shank3b have hyperthermic Tb and spend less time huddling. In contrast, individuals lacking the cold-sensing gene Trpm8 have hypothermic Tb - a deficit that is rescued by increased huddling time. These results reveal how huddling behavior facilitates acute adjustments of Tb in a state-dependent manner.

摘要

社会体温调节是维持体内恒温的一种方式。虽然成年老鼠是研究社会行为和能量调节的模式生物,但关于蜷缩和核心体温(Tb)之间的关系还知之甚少。在这里,我们开发了一种行为范式和计算工具,以确定活跃蜷缩和安静蜷缩是不同的热亚状态。我们发现蜷缩是一种有效的雌性而非雄性群体的体温调节策略。在 23°C(室温)下,但不是在 30°C(接近热中性)下,蜷缩有助于 Tb 和 Tb 方差的大幅降低。值得注意的是,活跃蜷缩与 Tb 的双向变化有关,这取决于其与安静蜷缩的接近程度。此外,缺乏突触支架基因 Shank3b 的群居动物 Tb 升高,蜷缩时间减少。相比之下,缺乏冷敏感基因 Trpm8 的个体 Tb 降低 - 通过增加蜷缩时间可以挽救这一缺陷。这些结果揭示了蜷缩行为如何以依赖状态的方式促进 Tb 的急性调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97a5/11415358/8c22f7bb7820/42003_2024_6781_Fig1_HTML.jpg

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