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Regulation of Locomotor activity in fed, fasted, and food-restricted mice lacking tissue-type plasminogen activator

机译:对缺乏组织型纤溶酶原激活物的进食,禁食和食物受限小鼠的运动活动的调节

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Circadian rhythms of physiology and behavior are driven by a circadian clock located in the suprachiasmatic nucleus of the hypothalamus. This clock is synchronized to environmental dayight cycles by photic input, which is dependent on the presence of mature brain-derived neurotrophic factor (BDNF) in the SCN. Mature BDNF is produced by the enzyme plasmin, which is converted from plasminogen by the enzyme tissue-type plasminogen activator (tPA). In this study, we evaluate circadian function in mice lacking functional tPA. tPA?/? mice have normal circadian periods, but show decreased nocturnal wheel-running activity. This difference is eliminated or reversed on the second day of a 48-h fast. Similarly, when placed on daily cycles of restricted food availability the genotypic difference in total wheel-running activity disappears, and tPA?/? mice show equivalent amounts of food anticipatory activity to wild type mice. These data suggest that tPA regulates nocturnal wheel-running activity, and that tPA differentially affects SCN-driven nocturnal activity rhythms and activity driven by fasting or temporal food restriction.
机译:生理和行为的昼夜节律是由位于下丘脑上视交叉上核的昼夜节律时钟驱动的。该时钟通过光输入同步到环境昼/夜周期,这取决于SCN中是否存在成熟的脑源性神经营养因子(BDNF)。成熟的BDNF由纤溶酶产生,纤溶酶由组织型纤溶酶原激活物(tPA)转化为纤溶酶。在这项研究中,我们评估缺乏功能性tPA的小鼠的昼夜节律功能。 tPA?/?小鼠的昼夜节律正常,但夜间轮转活动减少。这种差异在48小时禁食的第二天消除或逆转。类似地,当将其置于每天食物供应受限的周期中时,总的车轮行驶活动的基因型差异消失,tPA // t降低。小鼠显示出与野生型小鼠同等数量的食物预期活性。这些数据表明,tPA调节夜间轮转活动,并且tPA差异性影响SCN驱动的夜间活动节律和禁食或临时食物限制所驱动的活动。

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