Autophagy drives the conversion of developmental neural stem cells to the adult quiescent state

被引:0
|
作者
Isabel Calatayud-Baselga
Lucía Casares-Crespo
Carmina Franch-Ibáñez
José Guijarro-Nuez
Pascual Sanz
Helena Mira
机构
[1] Consejo Superior de Investigaciones Científicas (IBV-CSIC),Instituto de Biomedicina de Valencia
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Neurogenesis in the adult mammalian brain relies on the lifelong persistence of quiescent neural stem cell (NSC) reservoirs. Little is known about the mechanisms that lead to the initial establishment of quiescence, the main hallmark of adult stem cells, during development. Here we show that protein aggregates and autophagy machinery components accumulate in developmental radial glia-like NSCs as they enter quiescence and that pharmacological or genetic blockade of autophagy disrupts quiescence acquisition and maintenance. Conversely, increasing autophagy through AMPK/ULK1 activation instructs the acquisition of the quiescent state without affecting BMP signaling, a gatekeeper of NSC quiescence during adulthood. Selective ablation of Atg7, a critical gene for autophagosome formation, in radial glia-like NSCs at early and late postnatal stages compromises the initial acquisition and maintenance of quiescence during the formation of the hippocampal dentate gyrus NSC niche. Therefore, we demonstrate that autophagy is cell-intrinsically required to establish NSC quiescence during hippocampal development. Our results uncover an important role of autophagy in the transition of developmental NSCs into their dormant adult form, paving the way for studies directed at further understanding the mechanisms of stem cell niche formation and maintenance in the mammalian brain.
引用
收藏
相关论文
共 50 条
  • [41] Metabolic and proteostatic differences in quiescent and active neural stem cells
    Jiacheng Yu
    Gang Chen
    Hua Zhu
    Yi Zhong
    Zhenxing Yang
    Zhihong Jian
    Xiaoxing Xiong
    [J]. Neural Regeneration Research, 2024, 19 (01) : 43 - 48
  • [42] Acentrosomal microtubule assembly and reactivation of quiescent neural stem cells
    Wang, Hongyan
    [J]. JOURNAL OF NEUROCHEMISTRY, 2022, 162 : 160 - 160
  • [43] Dormant state of quiescent neural stem cells links Shank3 mutation to autism development
    Kim, Hongwon
    Cho, Byounggook
    Park, Hanseul
    Kim, Junyeop
    Kim, Siyoung
    Shin, Jaein
    Lengner, Christopher J.
    Won, Kyoung-Jae
    Kim, Jongpil
    [J]. MOLECULAR PSYCHIATRY, 2022, 27 (06) : 2751 - 2765
  • [45] Targeting quiescent leukemic stem cells using second generation autophagy inhibitors
    Pablo Baquero
    Amy Dawson
    Arunima Mukhopadhyay
    Elodie M. Kuntz
    Rebecca Mitchell
    Orianne Olivares
    Angela Ianniciello
    Mary T. Scott
    Karen Dunn
    Michael C. Nicastri
    Jeffrey D. Winkler
    Alison M. Michie
    Kevin M. Ryan
    Christina Halsey
    Eyal Gottlieb
    Erin P. Keaney
    Leon O. Murphy
    Ravi K. Amaravadi
    Tessa L. Holyoake
    G. Vignir Helgason
    [J]. Leukemia, 2019, 33 : 981 - 994
  • [46] Dormant state of quiescent neural stem cells links Shank3 mutation to autism development
    Hongwon Kim
    Byounggook Cho
    Hanseul Park
    Junyeop Kim
    Siyoung Kim
    Jaein Shin
    Christopher J. Lengner
    Kyoung-Jae Won
    Jongpil Kim
    [J]. Molecular Psychiatry, 2022, 27 : 2751 - 2765
  • [47] Targeting quiescent leukemic stem cells using second generation autophagy inhibitors
    Baquero, Pablo
    Dawson, Amy
    Mukhopadhyay, Arunima
    Kuntz, Elodie M.
    Mitchell, Rebecca
    Olivares, Orianne
    Lanniciello, Angela
    Scott, Mary T.
    Dunn, Karen
    Nicastri, Michael C.
    Winkler, Jeffrey D.
    Michie, Alison M.
    Ryan, Kevin M.
    Halsey, Christina
    Gottlieb, Eyal
    Keaney, Erin P.
    Murphy, Leon O.
    Amaravadi, Ravi K.
    Holyoake, Tessa L.
    Helgason, G. Vignir
    [J]. LEUKEMIA, 2019, 33 (04) : 981 - 994
  • [48] mdka Expression Is Associated with Quiescent Neural Stem Cells during Constitutive and Reactive Neurogenesis in the Adult Zebrafish Telencephalon
    Luebke, Luisa
    Zhang, Gaoqun
    Straehle, Uwe
    Rastegar, Sepand
    [J]. BRAIN SCIENCES, 2022, 12 (02)
  • [49] Accumulated quiescent neural stem cells in adult hippocampus of the mouse model for the MECP2 duplication syndrome
    Chen, Zhifang
    Li, Xiao
    Zhou, Jingjing
    Yuan, Bo
    Yu, Bin
    Tong, Dali
    Cheng, Cheng
    Shao, Yinqi
    Xia, Shengnan
    Zhang, Ran
    Lyu, Jingwen
    Yu, Xiuya
    Dong, Chen
    Zhou, Wen-Hao
    Qiu, Zilong
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [50] Depletion of transit amplifying cells in the adult brain does not affect quiescent neural stem cell pool size
    Zakiyyah Munirah Mohd Zaki
    Anri Kuroda
    Naoko Morimura
    Yoshitaka Hayashi
    Seiji Hitoshi
    [J]. The Journal of Physiological Sciences, 73