Cargando…

Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice

Small Ankyrins (sAnk1) are muscle-specific isoforms generated by the Ank1 gene that participate in the organization of the sarcoplasmic reticulum (SR) of striated muscles. Accordingly, the volume of SR tubules localized around the myofibrils is strongly reduced in skeletal muscle fibers of 4- and 10...

Descripción completa

Detalles Bibliográficos
Autores principales: Pierantozzi, Enrico, Szentesi, Péter, Al-Gaadi, Dána, Oláh, Tamás, Dienes, Beatrix, Sztretye, Mónika, Rossi, Daniela, Sorrentino, Vincenzo, Csernoch, László
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6651408/
https://www.ncbi.nlm.nih.gov/pubmed/31323924
http://dx.doi.org/10.3390/ijms20133361
_version_ 1783438339815243776
author Pierantozzi, Enrico
Szentesi, Péter
Al-Gaadi, Dána
Oláh, Tamás
Dienes, Beatrix
Sztretye, Mónika
Rossi, Daniela
Sorrentino, Vincenzo
Csernoch, László
author_facet Pierantozzi, Enrico
Szentesi, Péter
Al-Gaadi, Dána
Oláh, Tamás
Dienes, Beatrix
Sztretye, Mónika
Rossi, Daniela
Sorrentino, Vincenzo
Csernoch, László
author_sort Pierantozzi, Enrico
collection PubMed
description Small Ankyrins (sAnk1) are muscle-specific isoforms generated by the Ank1 gene that participate in the organization of the sarcoplasmic reticulum (SR) of striated muscles. Accordingly, the volume of SR tubules localized around the myofibrils is strongly reduced in skeletal muscle fibers of 4- and 10-month-old sAnk1 knockout (KO) mice, while additional structural alterations only develop with aging. To verify whether the lack of sAnk1 also alters intracellular Ca(2+) handling, cytosolic Ca(2+) levels were analyzed in stimulated skeletal muscle fibers from 4- and 10-month-old sAnk1 KO mice. The SR Ca(2+) content was reduced in sAnk1 KO mice regardless of age. The amplitude of the Ca(2+) transients induced by depolarizing pulses was decreased in myofibers of sAnk1 KO with respect to wild type (WT) fibers, while their voltage dependence was not affected. Furthermore, analysis of spontaneous Ca(2+) release events (sparks) on saponin-permeabilized muscle fibers indicated that the frequency of sparks was significantly lower in fibers from 4-month-old KO mice compared to WT. Furthermore, both the amplitude and spatial spread of sparks were significantly smaller in muscle fibers from both 4- and 10-month-old KO mice compared to WT. These data suggest that the absence of sAnk1 results in an impairment of SR Ca(2+) release, likely as a consequence of a decreased Ca(2+) store due to the reduction of the SR volume in sAnk1 KO muscle fibers.
format Online
Article
Text
id pubmed-6651408
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66514082019-08-08 Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice Pierantozzi, Enrico Szentesi, Péter Al-Gaadi, Dána Oláh, Tamás Dienes, Beatrix Sztretye, Mónika Rossi, Daniela Sorrentino, Vincenzo Csernoch, László Int J Mol Sci Article Small Ankyrins (sAnk1) are muscle-specific isoforms generated by the Ank1 gene that participate in the organization of the sarcoplasmic reticulum (SR) of striated muscles. Accordingly, the volume of SR tubules localized around the myofibrils is strongly reduced in skeletal muscle fibers of 4- and 10-month-old sAnk1 knockout (KO) mice, while additional structural alterations only develop with aging. To verify whether the lack of sAnk1 also alters intracellular Ca(2+) handling, cytosolic Ca(2+) levels were analyzed in stimulated skeletal muscle fibers from 4- and 10-month-old sAnk1 KO mice. The SR Ca(2+) content was reduced in sAnk1 KO mice regardless of age. The amplitude of the Ca(2+) transients induced by depolarizing pulses was decreased in myofibers of sAnk1 KO with respect to wild type (WT) fibers, while their voltage dependence was not affected. Furthermore, analysis of spontaneous Ca(2+) release events (sparks) on saponin-permeabilized muscle fibers indicated that the frequency of sparks was significantly lower in fibers from 4-month-old KO mice compared to WT. Furthermore, both the amplitude and spatial spread of sparks were significantly smaller in muscle fibers from both 4- and 10-month-old KO mice compared to WT. These data suggest that the absence of sAnk1 results in an impairment of SR Ca(2+) release, likely as a consequence of a decreased Ca(2+) store due to the reduction of the SR volume in sAnk1 KO muscle fibers. MDPI 2019-07-09 /pmc/articles/PMC6651408/ /pubmed/31323924 http://dx.doi.org/10.3390/ijms20133361 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pierantozzi, Enrico
Szentesi, Péter
Al-Gaadi, Dána
Oláh, Tamás
Dienes, Beatrix
Sztretye, Mónika
Rossi, Daniela
Sorrentino, Vincenzo
Csernoch, László
Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice
title Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice
title_full Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice
title_fullStr Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice
title_full_unstemmed Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice
title_short Calcium Homeostasis Is Modified in Skeletal Muscle Fibers of Small Ankyrin1 Knockout Mice
title_sort calcium homeostasis is modified in skeletal muscle fibers of small ankyrin1 knockout mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6651408/
https://www.ncbi.nlm.nih.gov/pubmed/31323924
http://dx.doi.org/10.3390/ijms20133361
work_keys_str_mv AT pierantozzienrico calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT szentesipeter calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT algaadidana calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT olahtamas calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT dienesbeatrix calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT sztretyemonika calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT rossidaniela calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT sorrentinovincenzo calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice
AT csernochlaszlo calciumhomeostasisismodifiedinskeletalmusclefibersofsmallankyrin1knockoutmice