Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation
Stavsky et al. examined the effects of deleting the mitochondrial sodium/lithium/calcium exchanger, NCLX, on mitochondrial and synaptic calcium homeostasis, synaptic activity, and plasticity in mice. Having identified a human mutation that impairs NCLX activity and is associated with mental retardat...
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Nature Portfolio
2021
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oai:doaj.org-article:f0e2c7e570da4222b9804930f469cda42021-12-02T15:02:48ZAberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation10.1038/s42003-021-02114-02399-3642https://doaj.org/article/f0e2c7e570da4222b9804930f469cda42021-06-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-02114-0https://doaj.org/toc/2399-3642Stavsky et al. examined the effects of deleting the mitochondrial sodium/lithium/calcium exchanger, NCLX, on mitochondrial and synaptic calcium homeostasis, synaptic activity, and plasticity in mice. Having identified a human mutation that impairs NCLX activity and is associated with mental retardation, they show that NCLX is crucial for defining synaptic strength and plasticity, which are pivotal elements of learning and memory.Alexandra StavskyOhad StolerMarko KosticTomer KatoshevskyEssam A. AssaliIvana SavicYael AmitaiHolger ProkischSteffen LeizCornelia Daumer-HaasIlya FleidervishFabiana PerrochiDaniel GitlerIsrael SeklerNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-14 (2021) |
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Biology (General) QH301-705.5 |
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Biology (General) QH301-705.5 Alexandra Stavsky Ohad Stoler Marko Kostic Tomer Katoshevsky Essam A. Assali Ivana Savic Yael Amitai Holger Prokisch Steffen Leiz Cornelia Daumer-Haas Ilya Fleidervish Fabiana Perrochi Daniel Gitler Israel Sekler Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation |
description |
Stavsky et al. examined the effects of deleting the mitochondrial sodium/lithium/calcium exchanger, NCLX, on mitochondrial and synaptic calcium homeostasis, synaptic activity, and plasticity in mice. Having identified a human mutation that impairs NCLX activity and is associated with mental retardation, they show that NCLX is crucial for defining synaptic strength and plasticity, which are pivotal elements of learning and memory. |
format |
article |
author |
Alexandra Stavsky Ohad Stoler Marko Kostic Tomer Katoshevsky Essam A. Assali Ivana Savic Yael Amitai Holger Prokisch Steffen Leiz Cornelia Daumer-Haas Ilya Fleidervish Fabiana Perrochi Daniel Gitler Israel Sekler |
author_facet |
Alexandra Stavsky Ohad Stoler Marko Kostic Tomer Katoshevsky Essam A. Assali Ivana Savic Yael Amitai Holger Prokisch Steffen Leiz Cornelia Daumer-Haas Ilya Fleidervish Fabiana Perrochi Daniel Gitler Israel Sekler |
author_sort |
Alexandra Stavsky |
title |
Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation |
title_short |
Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation |
title_full |
Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation |
title_fullStr |
Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation |
title_full_unstemmed |
Aberrant activity of mitochondrial NCLX is linked to impaired synaptic transmission and is associated with mental retardation |
title_sort |
aberrant activity of mitochondrial nclx is linked to impaired synaptic transmission and is associated with mental retardation |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/f0e2c7e570da4222b9804930f469cda4 |
work_keys_str_mv |
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