Zobrazeno 1 - 10
of 237
pro vyhledávání: '"volume homeostasis"'
Autor:
Amarens van der Vaart, Stephan J. L. Bakker, Gozewijn D. Laverman, Peter R. van Dijk, Martin H. de Borst
Publikováno v:
Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease, Vol 12, Iss 23 (2023)
Background FGF23 (fibroblast growth factor 23) is associated with a higher mortality risk in type 2 diabetes, but the mechanism is unclear. We aimed to study whether NT‐proBNP (N‐terminal pro‐brain natriuretic peptide) mediates the association
Externí odkaz:
https://doaj.org/article/5fdaf493ba654738aeaca9363ad222e0
Autor:
Go Kasuya, Osamu Nureki
Publikováno v:
Frontiers in Pharmacology, Vol 13 (2022)
Members of the leucine-rich repeat-containing 8 (LRRC8) protein family, composed of five LRRC8A-E isoforms, are pore-forming components of the volume-regulated anion channel (VRAC), which is activated by cell swelling and releases chloride ions (Cl
Externí odkaz:
https://doaj.org/article/94ae82521d374c6682ec5947dfa85190
Akademický článek
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Autor:
Rauan Kaiyrzhanov, Sami E.M. Mohammed, Reza Maroofian, Ralf A. Husain, Alessia Catania, Alessandra Torraco, Ahmad Alahmad, Marina Dutra-Clarke, Sabine Grønborg, Annapurna Sudarsanam, Julie Vogt, Filippo Arrigoni, Julia Baptista, Shahzad Haider, René G. Feichtinger, Paolo Bernardi, Alessandra Zulian, Mirjana Gusic, Stephanie Efthymiou, Renkui Bai, Farah Bibi, Alejandro Horga, Julian A. Martinez-Agosto, Amanda Lam, Andreea Manole, Diego-Perez Rodriguez, Romina Durigon, Angela Pyle, Buthaina Albash, Carlo Dionisi-Vici, David Murphy, Diego Martinelli, Enrico Bugiardini, Katrina Allis, Costanza Lamperti, Siegfried Reipert, Lotte Risom, Lucia Laugwitz, Michela Di Nottia, Robert McFarland, Laura Vilarinho, Michael Hanna, Holger Prokisch, Johannes A. Mayr, Enrico Silvio Bertini, Daniele Ghezzi, Elsebet Østergaard, Saskia B. Wortmann, Rosalba Carrozzo, Tobias B. Haack, Robert W. Taylor, Antonella Spinazzola, Karin Nowikovsky, Henry Houlden
Publikováno v:
Am. J. Hum. Genet. 109, 1692-1712 (2022)
Kaiyrzhanov, R, Mohammed, S E M, Maroofian, R, Husain, R A, Catania, A, Torraco, A, Alahmad, A, Dutra-Clarke, M, Grønborg, S, Sudarsanam, A, Vogt, J, Arrigoni, F, Baptista, J, Haider, S, Feichtinger, R G, Bernardi, P, Zulian, A, Gusic, M, Efthymiou, S, Bai, R, Bibi, F, Horga, A, Martinez-Agosto, J A, Lam, A, Manole, A, Rodriguez, D P, Durigon, R, Pyle, A, Albash, B, Dionisi-Vici, C, Murphy, D, Martinelli, D, Bugiardini, E, Allis, K, Lamperti, C, Reipert, S, Risom, L, Laugwitz, L, Di Nottia, M, McFarland, R, Vilarinho, L, Hanna, M, Prokisch, H, Mayr, J A, Bertini, E S, Ghezzi, D, Østergaard, E, Wortmann, S B, Carrozzo, R, Haack, T B, Taylor, R W, Spinazzola, A, Nowikovsky, K & Houlden, H 2022, ' Bi-allelic LETM1 variants perturb mitochondrial ion homeostasis leading to a clinical spectrum with predominant nervous system involvement ', American Journal of Human Genetics, vol. 109, no. 9, pp. 1692-1712 . https://doi.org/10.1016/j.ajhg.2022.07.007
American Journal of Human Genetics, 109, 9, pp. 1692-1712
American Journal of Human Genetics, 109, 1692-1712
Kaiyrzhanov, R, Mohammed, S E M, Maroofian, R, Husain, R A, Catania, A, Torraco, A, Alahmad, A, Dutra-Clarke, M, Grønborg, S, Sudarsanam, A, Vogt, J, Arrigoni, F, Baptista, J, Haider, S, Feichtinger, R G, Bernardi, P, Zulian, A, Gusic, M, Efthymiou, S, Bai, R, Bibi, F, Horga, A, Martinez-Agosto, J A, Lam, A, Manole, A, Rodriguez, D P, Durigon, R, Pyle, A, Albash, B, Dionisi-Vici, C, Murphy, D, Martinelli, D, Bugiardini, E, Allis, K, Lamperti, C, Reipert, S, Risom, L, Laugwitz, L, Di Nottia, M, McFarland, R, Vilarinho, L, Hanna, M, Prokisch, H, Mayr, J A, Bertini, E S, Ghezzi, D, Østergaard, E, Wortmann, S B, Carrozzo, R, Haack, T B, Taylor, R W, Spinazzola, A, Nowikovsky, K & Houlden, H 2022, ' Bi-allelic LETM1 variants perturb mitochondrial ion homeostasis leading to a clinical spectrum with predominant nervous system involvement ', American Journal of Human Genetics, vol. 109, no. 9, pp. 1692-1712 . https://doi.org/10.1016/j.ajhg.2022.07.007
American Journal of Human Genetics, 109, 9, pp. 1692-1712
American Journal of Human Genetics, 109, 1692-1712
Leucine zipper-EF-hand containing transmembrane protein 1 (LETM1) encodes an inner mitochondrial membrane protein with an osmoregulatory function controlling mitochondrial volume and ion homeostasis. The putative association of LETM1 with a human dis
Autor:
Shane Austin, Mojtaba Tavakoli, Christina Pfeiffer, Julia Seifert, Andrea Mattarei, Diego De Stefani, Mario Zoratti, Karin Nowikovsky
Publikováno v:
Frontiers in Physiology, Vol 8 (2017)
Ca2+ transport across the inner membrane of mitochondria (IMM) is of major importance for their functions in bioenergetics, cell death and signaling. It is therefore tightly regulated. It has been recently proposed that LETM1—an IMM protein with a
Externí odkaz:
https://doaj.org/article/dfae5bb4940e4819b33886ce4a674da8
Publikováno v:
Diseases, Vol 2, Iss 2, Pp 71-92 (2014)
The renal collecting duct is the nephron segment where the final urine content of acid equivalents and inorganic ions are determined. The role of two different cell types present in this nephron segment has been determined many years ago: principal c
Externí odkaz:
https://doaj.org/article/f446bdea2b984f56b29804b6395c63e0
Autor:
Nanacha Afifi , Igbokwe A
Publikováno v:
Kanem Journal of Medical Sciences; Vol. 14 No. 2 (2020); 95-105
Background: The intraerythrocytic concentrations of ions (Na , K , Cl and HCO ) play key roles in maintaining erythrocyte volume homeostasis. Anisosmotic and isosomotic changes of these ion concentrations challenge erythrocyte volume to either shrink
Akademický článek
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Publikováno v:
Cell Proliferation
Objectives Recent studies revealed LRRC8A to be an essential component of volume‐regulated anion channel (VRAC), which regulates cellular volume homeostasis. However, evidence for the contribution of LRRC8A‐dependent VRAC activity in vascular smo
Autor:
Gisela Di Giusto, Pablo García-Miranda, Vanina Netti, Juan Carlos Fernández, Luciana Melamud, Miriam Echevarría, Paula Ford, Claudia Capurro
Publikováno v:
Digital.CSIC. Repositorio Institucional del CSIC
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Aquaporin-4 (AQP4) is the target of the specific immunoglobulin G autoantibody (AQP4-IgG) produced in patients with neuromyelitis optica spectrum disorders (NMOSD). Previous studies demonstrated that AQP4-IgG binding to astrocytic AQP4 leads to cell-