生物
细胞内
神经干细胞
细胞生物学
动力学(音乐)
钙
生物学中的钙
干细胞
细胞
细胞周期
内分泌学
遗传学
内科学
声学
物理
医学
作者
Archana Gengatharan,Sarah Malvaut,Alina Marymonchyk,Majid Ghareghani,Marina Snapyan,Judith Fischer,Jovica Ninkovic,Magdalena Götz,Armen Saghatelyan
出处
期刊:Cell
[Cell Press]
日期:2021-01-21
卷期号:184 (3): 709-722.e13
被引量:71
标识
DOI:10.1016/j.cell.2020.12.026
摘要
Summary
Neural stem cells (NSCs) in the adult brain transit from the quiescent state to proliferation to produce new neurons. The mechanisms regulating this transition in freely behaving animals are, however, poorly understood. We customized in vivo imaging protocols to follow NSCs for several days up to months, observing their activation kinetics in freely behaving mice. Strikingly, NSC division is more frequent during daylight and is inhibited by darkness-induced melatonin signaling. The inhibition of melatonin receptors affected intracellular Ca2+ dynamics and promoted NSC activation. We further discovered a Ca2+ signature of quiescent versus activated NSCs and showed that several microenvironmental signals converge on intracellular Ca2+ pathways to regulate NSC quiescence and activation. In vivo NSC-specific optogenetic modulation of Ca2+ fluxes to mimic quiescent-state-like Ca2+ dynamics in freely behaving mice blocked NSC activation and maintained their quiescence, pointing to the regulatory mechanisms mediating NSC activation in freely behaving animals.
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