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Projekt Druckansicht

Molecular and physiological characteristics of Na+/Mg2+ exchanger SLC41A1 in HEK293 cells and in primary-derived and KL-1 cardiomyocytes

Antragsteller Dr. Martin Kolisek
Fachliche Zuordnung Tiermedizin
Förderung Förderung von 2008 bis 2015
Projektkennung Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 69876609
 
Erstellungsjahr 2016

Zusammenfassung der Projektergebnisse

In summary the project led to publications primarily describing (1) regulation of SLC41A1 and its detailed molecular biology. Furthermore, (2) in our work we have proposed, apart of its obvious role in intracellular magnesium homeostasis, also role of SLC41A1 in pathophysiology of prominent ailments such as: diabetes mellitus, Parkinson’s disease, and also cancer. In particular the link between SLC41A1 and the regulation of Akt/PKB makes SLC41A1 to be an attractive target for translational medicine and chronobiology in future studies. I believe that work resulting from this project significantly shifted our knowledge on involvement of SLC41A1 in cellular physiology and pathophysiology, and helped to understand also the role of the close homolog of SLC41A1, namely SLC41A3 that is the first ever described Mg2+ carrier and Mg2+-efflux sysem in mitochondria.

Projektbezogene Publikationen (Auswahl)

  • "Inside-in" or "inside-out"? The membrane topology of SLC41A1. Magnesium Research 2013/26(4)/176-81
    Sponder G, Rutschmann K, Kolisek M
    (Siehe online unter https://doi.org/10.1684/mrh.2014.0351)
  • Nature of SLC41A1 complexes: report on split-ubiquitin yeast two hybrid assay. Magnesium Research 2013/26(2)/56-66
    Nestler A, Sponder S, Rutschmann K, Mastrototaro M, Weise C, Vormann J, Schweigel-Röntgen M, Kolisek M
    (Siehe online unter https://doi.org/10.1684/mrh.2013.0339)
  • Substitution p.A350V in Na+/Mg2+ exchanger SLC41A1, Potentially associated with Parkinson’s Disease, is a gain of function mutation. PLoS ONE 2013/8(8)/e71096
    Kolisek M, Sponder G, Mastrototaro L, Smorodchenko A, Launay P, Vormann J, Schweigel-Röntgen M
    (Siehe online unter https://doi.org/10.1371/journal.pone.0071096)
  • Insulin modulates the Na+/Mg2+ exchanger SLC41A1 and influences Mg2+ efflux from intracellular stores in transgenic HEK293 cells. Journal of Nutrition 2015/145(11)/2440-7
    Mastrototaro L, Tietjen U, Sponder G, Vormann J, Aschenbach JR, Kolisek M
    (Siehe online unter https://doi.org/10.3945/jn.115.213918)
  • PARK7/DJ-1 dysregulation by oxidative stress leads to magnesium deficiency: implications in degenerative and chronic diseases. Clinical Science 2015/129(12)/1143-50
    Kolisek M, Montezano AM, Sponder G, Anagnastopulou A, Vormann J, Rhian Touyz R, Aschenbach JR
    (Siehe online unter https://doi.org/10.1042/CS20150355)
  • Human CNNM2 is not a Mg2+ transporter per se. Pflügers Archiv – European Jornal of Physiology 2016/23.03 / Epub ahead of print
    Mastrototaro L, Sponder G, Kurth K, Merolle L, Zhang Z, Abdulhanan N, Smorodchenko A, Wolf K, Fleig A, Iotti S, Aschenbach JR, Vormann J, Kolisek M
    (Siehe online unter https://doi.org/10.1007/s00424-016-1816-7)
  • SLC41A3 encodes for a mitochondrial Mg2+ efflux system. Scientific Reports, 6, Article number: 27999 (2016)
    Mastrototaro L, Smorodchenko A, Aschenbach JR, Kolisek M, Sponder G
    (Siehe online unter https://doi.org/10.1038/srep27999)
 
 

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