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ANO1/TMEM16A regulates process maturation in radial glial cells in the developing brain
by
Lee, Sung Hoon
, Jung, Jooyoung
, Hong, Gyu-Sang
, Lee, Byeongjun
, Hwang, Eun Mi
, Choi, Jae Hyouk
, Jang, Yongwoo
, Oh, Soo-Jin
, Kim, In-Beom
, Kim, Hyungsup
, Oh, Uhtaek
in
Animals
/ Anoctamin-1 - genetics
/ Anoctamin-1 - physiology
/ Biological Sciences
/ Brain
/ Brain - cytology
/ Brain - embryology
/ Brain - metabolism
/ Brain stem
/ Brain-derived neurotrophic factor
/ Brain-Derived Neurotrophic Factor - metabolism
/ Calcium chloride
/ Calcium ions
/ Chloride ions
/ Chlorides - metabolism
/ Cortex
/ Developmental stages
/ Down-Regulation
/ Embryos
/ Glial cells
/ Ion channels
/ Maturation
/ Mice
/ Mice, Inbred C57BL
/ Mice, Knockout
/ Neural stem cells
/ Neuroglia - cytology
/ Neuroglia - metabolism
/ Neuronal-glial interactions
/ Neurons
/ Neuroscience
/ Progenitor cells
/ Radial glial cells
/ Retinal ganglion cells
/ Stem cell transplantation
/ Stem cells
/ Trophic factors
/ Up-Regulation
/ Ventricle
/ Ventricular zone
2019
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ANO1/TMEM16A regulates process maturation in radial glial cells in the developing brain
by
Lee, Sung Hoon
, Jung, Jooyoung
, Hong, Gyu-Sang
, Lee, Byeongjun
, Hwang, Eun Mi
, Choi, Jae Hyouk
, Jang, Yongwoo
, Oh, Soo-Jin
, Kim, In-Beom
, Kim, Hyungsup
, Oh, Uhtaek
in
Animals
/ Anoctamin-1 - genetics
/ Anoctamin-1 - physiology
/ Biological Sciences
/ Brain
/ Brain - cytology
/ Brain - embryology
/ Brain - metabolism
/ Brain stem
/ Brain-derived neurotrophic factor
/ Brain-Derived Neurotrophic Factor - metabolism
/ Calcium chloride
/ Calcium ions
/ Chloride ions
/ Chlorides - metabolism
/ Cortex
/ Developmental stages
/ Down-Regulation
/ Embryos
/ Glial cells
/ Ion channels
/ Maturation
/ Mice
/ Mice, Inbred C57BL
/ Mice, Knockout
/ Neural stem cells
/ Neuroglia - cytology
/ Neuroglia - metabolism
/ Neuronal-glial interactions
/ Neurons
/ Neuroscience
/ Progenitor cells
/ Radial glial cells
/ Retinal ganglion cells
/ Stem cell transplantation
/ Stem cells
/ Trophic factors
/ Up-Regulation
/ Ventricle
/ Ventricular zone
2019
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ANO1/TMEM16A regulates process maturation in radial glial cells in the developing brain
by
Lee, Sung Hoon
, Jung, Jooyoung
, Hong, Gyu-Sang
, Lee, Byeongjun
, Hwang, Eun Mi
, Choi, Jae Hyouk
, Jang, Yongwoo
, Oh, Soo-Jin
, Kim, In-Beom
, Kim, Hyungsup
, Oh, Uhtaek
in
Animals
/ Anoctamin-1 - genetics
/ Anoctamin-1 - physiology
/ Biological Sciences
/ Brain
/ Brain - cytology
/ Brain - embryology
/ Brain - metabolism
/ Brain stem
/ Brain-derived neurotrophic factor
/ Brain-Derived Neurotrophic Factor - metabolism
/ Calcium chloride
/ Calcium ions
/ Chloride ions
/ Chlorides - metabolism
/ Cortex
/ Developmental stages
/ Down-Regulation
/ Embryos
/ Glial cells
/ Ion channels
/ Maturation
/ Mice
/ Mice, Inbred C57BL
/ Mice, Knockout
/ Neural stem cells
/ Neuroglia - cytology
/ Neuroglia - metabolism
/ Neuronal-glial interactions
/ Neurons
/ Neuroscience
/ Progenitor cells
/ Radial glial cells
/ Retinal ganglion cells
/ Stem cell transplantation
/ Stem cells
/ Trophic factors
/ Up-Regulation
/ Ventricle
/ Ventricular zone
2019
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ANO1/TMEM16A regulates process maturation in radial glial cells in the developing brain
Journal Article
ANO1/TMEM16A regulates process maturation in radial glial cells in the developing brain
2019
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Overview
Neural stem cells (NSCs) are primary progenitor cells in the early developmental stage in the brain that initiate a diverse lineage of differentiated neurons and glia. Radial glial cells (RGCs), a type of neural stem cell in the ventricular zone, are essential for nurturing and delivering new immature neurons to the appropriate cortical target layers. Here we report that Anoctamin 1 (ANO1)/TMEM16A, a Ca2+-activated chloride channel, mediates the Ca2+-dependent process extension of RGCs. ANO1 is highly expressed and functionally active in RGCs of the mouse embryonic ventricular zone. Knockdown of ANO1 suppresses RGC process extension and protrusions, whereas ANO1 overexpression stimulates process extension. Among various trophic factors, brain-derived neurotrophic factor (BDNF) activates ANO1, which is required for BDNF-induced process extension in RGCs. More importantly, Ano1-deficient mice exhibited disrupted cortical layers and reduced cortical thickness. We thus conclude that the regulation of RGC process extension by ANO1 contributes to the normal formation of mouse embryonic brain.
Publisher
National Academy of Sciences
Subject
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