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Titel: Store-operated calcium entry is reduced in spastin-linked hereditary spastic paraplegia
VerfasserIn: Rizo, Tania
Gebhardt, Lisa
Riedlberger, Julia
Eberhardt, Esther
Fester, Lars
Alansary, Dalia
Winkler, Jürgen
Turan, Soeren
Arnold, Philipp
Niemeyer, Barbara A.
Fischer, Michael J. M.
Winner, Beate
Sprache: Englisch
Titel: Brain
Bandnummer: 145
Heft: 9
Seiten: 3131-3146
Verlag/Plattform: Oxford University Press
Erscheinungsjahr: 2022
Freie Schlagwörter: spastin
STIM1
microtubules
endoplasmic reticulum
store-operated calcium entry
DDC-Sachgruppe: 610 Medizin, Gesundheit
Dokumenttyp: Journalartikel / Zeitschriftenartikel
Abstract: Pathogenic variants in SPAST, the gene coding for spastin, are the single most common cause of hereditary spastic paraplegia, a progressive motor neuron disease. Spastin regulates key cellular functions, including microtubule-severing and endoplasmic reticulum-morphogenesis. However, it remains unclear how alterations in these cellular functions due to SPAST pathogenic variants result in motor neuron dysfunction. Since spastin influences both microtubule network and endoplasmic reticulum structure, we hypothesized that spastin is necessary for the regulation of Ca2+ homeostasis via store-operated calcium entry. Here, we show that the lack of spastin enlarges the endoplasmic reticulum and reduces store-operated calcium entry. In addition, elevated levels of different spastin variants induced clustering of STIM1 within the endoplasmic reticulum, altered the transport of STIM1 to the plasma membrane and reduced store-operated calcium entry, which could be rescued by exogenous expression of STIM1. Importantly, store-operated calcium entry was strongly reduced in induced pluripotent stem cell-derived neurons from hereditary spastic paraplegia patients with pathogenic variants in SPAST resulting in spastin haploinsufficiency. These neurons developed axonal swellings in response to lack of spastin. We were able to rescue both store-operated calcium entry and axonal swellings in SPAST patient neurons by restoring spastin levels, using CRISPR/Cas9 to correct the pathogenic variants in SPAST. These findings demonstrate that proper amounts of spastin are a key regulatory component for store-operated calcium entry mediated Ca2+ homeostasis and suggest store-operated calcium entry as a disease relevant mechanism of spastin-linked motor neuron disease.
DOI der Erstveröffentlichung: 10.1093/brain/awac122
URL der Erstveröffentlichung: https://doi.org/10.1093/brain/awac122
Link zu diesem Datensatz: urn:nbn:de:bsz:291--ds-416667
hdl:20.500.11880/37305
http://dx.doi.org/10.22028/D291-41666
ISSN: 1460-2156
0006-8950
Datum des Eintrags: 23-Feb-2024
Bezeichnung des in Beziehung stehenden Objekts: Supplementary material
In Beziehung stehendes Objekt: https://oup.silverchair-cdn.com/oup/backfile/Content_public/Journal/brain/145/9/10.1093_brain_awac122/3/awac122_supplementary_data.zip?Expires=1711642144&Signature=F~-DqZM0TBCNGAzA7Rtocqko49XDyE6b4Qlr9gIRVtgvaNhCWytu~26nk1FoCfW9eoN3qBgUbWzDWVOlY1IDdtwO0TGo4rZs0M3JoAcDDWBDPnZL6tPyV0puedm2pJ9fpuFCzAqcJEXNslPxFumjp7vGW4HbDLfS8jJu8yDwLBEqD~AwU0yWTpWibFaUIkg7lDH7PzFo7dE7ElTKSDAgOPnRS1Pm2sFoajm8BekEnubcFdApTYouPpW7RBktjQ5H0q56rykHjvlBKLSs5elXOoowHEvUaEq~LjWDybd73MheO1gQ-WKBGaYIfomgIDHOEqFIpXHwR7Va6FKvmIdlSQ__&Key-Pair-Id=APKAIE5G5CRDK6RD3PGA
Fakultät: M - Medizinische Fakultät
Fachrichtung: M - Biophysik
Professur: M - Prof. Dr. Barbara Niemeyer-Hoth
Sammlung:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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