Caveolin-3 and Caveolin-1 Interaction Decreases Channel Dysfunction Due to Caveolin-3 Mutations

被引:2
作者
Benzoni, Patrizia [1 ]
Gazzerro, Elisabetta [2 ]
Fiorillo, Chiara [3 ]
Baratto, Serena [4 ]
Bartolucci, Chiara [5 ]
Severi, Stefano [5 ]
Milanesi, Raffaella [1 ,6 ]
Lippi, Melania [1 ,7 ]
Langione, Marianna [1 ,8 ]
Murano, Carmen [1 ,9 ]
Meoni, Clarissa [1 ]
Popolizio, Vera [1 ]
Cospito, Alessandro [1 ]
Baruscotti, Mirko [1 ]
Bucchi, Annalisa [1 ]
Barbuti, Andrea [1 ]
机构
[1] Univ Milan, Dept Biosci, Cell Physiol MiLab, I-20133 Milan, Italy
[2] Cooperat Max Delbruck Ctr Mol Med Helmholtz Assoc, Expt & Clin Res Ctr, Unit Muscle Res, D-13125 Berlin, Germany
[3] Univ Genoa, IRCCS Ist Giannina Gaslini, Child Neuropsychiat Unit, DINOGMI, I-16147 Genoa, Italy
[4] IRCCS Ist Giannina Gaslini, Ctr Translat & Expt Myol, I-16147 Genoa, Italy
[5] Univ Bologna, Dept Elect Elect & Informat Engn Guglielmo Marconi, I-47521 Cesena, Italy
[6] Univ Milan, Dipartimento Med Vet, I-26900 Lodi, Italy
[7] Ctr Cardiol Monzino IRCCS, Unit Vasc Biol & Regenerat Med, I-20138 Milan, Italy
[8] Univ Florence, Dept Clin & Expt Med, Div Physiol, I-50134 Florence, Italy
[9] Inst Canc Res, Translat Immunotherapy Team, London SW7 3RP, England
关键词
caveolin-3; caveolin-1; electrophysiology; HCN4; Kv1.5; Kir2.1; caveolinopathies; LATE SODIUM CURRENT; MICE SHOW; MUSCLE; EXPRESSION; T78M; CAVEOLINOPATHIES; CELLS; MODEL; HCN4;
D O I
10.3390/ijms25020980
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Caveolae constitute membrane microdomains where receptors and ion channels functionally interact. Caveolin-3 (cav-3) is the key structural component of muscular caveolae. Mutations in CAV3 lead to caveolinopathies, which result in both muscular dystrophies and cardiac diseases. In cardiomyocytes, cav-1 participates with cav-3 to form caveolae; skeletal myotubes and adult skeletal fibers do not express cav-1. In the heart, the absence of cardiac alterations in the majority of cases may depend on a conserved organization of caveolae thanks to the expression of cav-1. We decided to focus on three specific cav-3 mutations (Delta 62-64YTT; T78K and W101C) found in heterozygosis in patients suffering from skeletal muscle disorders. We overexpressed both the WT and mutated cav-3 together with ion channels interacting with and modulated by cav-3. Patch-clamp analysis conducted in caveolin-free cells (MEF-KO), revealed that the T78K mutant is dominant negative, causing its intracellular retention together with cav-3 WT, and inducing a significant reduction in current densities of all three ion channels tested. The other cav-3 mutations did not cause significant alterations. Mathematical modelling of the effects of cav-3 T78K would impair repolarization to levels incompatible with life. For this reason, we decided to compare the effects of this mutation in other cell lines that endogenously express cav-1 (MEF-STO and CHO cells) and to modulate cav-1 expression with an shRNA approach. In these systems, the membrane localization of cav-3 T78K was rescued in the presence of cav-1, and the current densities of hHCN4, hKv1.5 and hKir2.1 were also rescued. These results constitute the first evidence of a compensatory role of cav-1 in the heart, justifying the reduced susceptibility of this organ to caveolinopathies.
引用
收藏
页数:18
相关论文
共 35 条
[1]   The caveolae membrane system [J].
Anderson, RGW .
ANNUAL REVIEW OF BIOCHEMISTRY, 1998, 67 :199-225
[2]   A caveolin-binding domain in the HCN4 channels mediates functional interaction with caveolin proteins [J].
Barbuti, Andrea ;
Scavone, Angela ;
Mazzocchi, Nausicaa ;
Terragni, Benedetta ;
Baruscotti, Mirko ;
DiFrancesco, Dario .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2012, 53 (02) :187-195
[3]   Immunohistochemical evidence of caveolin-1 expression in the human fetal and neonatal striated muscle and absence in the adult's [J].
Barresi, Valeria ;
Gi-Osso, Maddalena ;
Barresi, Gaetano .
APPLIED IMMUNOHISTOCHEMISTRY & MOLECULAR MORPHOLOGY, 2008, 16 (03) :267-273
[4]   The expression of the rare caveolin-3 variant T78M alters cardiac ion channels function and membrane excitability [J].
Campostrini, Giulia ;
Bonzanni, Mattia ;
Lissoni, Alessio ;
Bazzini, Claudia ;
Milanesi, Raffaella ;
Vezzoli, Elena ;
Francolini, Maura ;
Baruscotti, Mirko ;
Bucchi, Annalisa ;
Rivolta, Ilaria ;
Fantini, Matteo ;
Severi, Stefano ;
Cappato, Riccardo ;
Crotti, Lia ;
Schwartz, Peter J. ;
DiFrancesco, Dario ;
Barbuti, Andrea .
CARDIOVASCULAR RESEARCH, 2017, 113 (10) :1256-1265
[5]   Rippling muscle disease and cardiomyopathy associated with a mutation in the CAV3 gene [J].
Catteruccia, Michela ;
Sanna, Tommaso ;
Santorelli, Filippo Maria ;
Tessa, Alessandra ;
Di Giacopo, Raffaella ;
Sauchelli, Donato ;
Verbo, Alessandro ;
Lo Monaco, Mauro ;
Servidei, Serenella .
NEUROMUSCULAR DISORDERS, 2009, 19 (11) :779-783
[6]   Biochemical and pathological changes result from mutated Caveolin-3 in muscle [J].
Coraspe, Jose Andres Gonzalez ;
Weis, Joachim ;
Anderson, Mary E. ;
Muenchberg, Ute ;
Lorenz, Kristina ;
Buchkremer, Stephan ;
Carr, Stephanie ;
Zahedi, Rene Peiman ;
Brauers, Eva ;
Michels, Hannah ;
Sunada, Yoshihide ;
Lochmueller, Hanns ;
Campbell, Kevin P. ;
Freier, Erik ;
Hathazi, Denisa ;
Roos, Andreas .
SKELETAL MUSCLE, 2018, 8
[7]   Novel mechanism for sudden infant death syndrome: Persistent late sodium current secondary to mutations in caveolin-3 [J].
Cronk, Lisa B. ;
Ye, Bin ;
Kaku, Toshihiko ;
Tester, David J. ;
Vatta, Matteo ;
Makielski, Jonathan C. ;
Ackerman, Michael J. .
HEART RHYTHM, 2007, 4 (02) :161-166
[8]   A circadian clock in the sinus node mediates day-night rhythms in Hcn4 and heart rate [J].
D'Souza, Alicia ;
Wang, Yanwen ;
Anderson, Cali ;
Bucchi, Annalisa ;
Baruscotti, Mirko ;
Olieslagers, Serve ;
Mesirca, Pietro ;
Johnsen, Anne Berit ;
Mastitskaya, Svetlana ;
Ni, Haibo ;
Zhang, Yu ;
Black, Nicholas ;
Cox, Charlotte ;
Wegner, Sven ;
Bano-Otalora, Beatriz ;
Petit, Cheryl ;
Gill, Eleanor ;
Logantha, Sunil Jit R. J. ;
Dobrzynski, Halina ;
Ashton, Nick ;
Hart, George ;
Zhang, Rai ;
Zhang, Henggui ;
Cartwright, Elizabeth J. ;
Wisloff, Ulrik ;
Mangoni, Matteo E. ;
Da Costa Martins, Paula A. ;
Piggins, Hugh D. ;
DiFrancesco, Dario ;
Boyett, Mark R. .
HEART RHYTHM, 2021, 18 (05) :801-810
[9]   Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells [J].
Dewulf, Melissa ;
Koster, Darius Vasco ;
Sinha, Bidisha ;
de Lesegno, Christine Viaris ;
Chambon, Valerie ;
Bigot, Anne ;
Bensalah, Mona ;
Negroni, Elisa ;
Tardif, Nicolas ;
Podkalicka, Joanna ;
Johannes, Ludger ;
Nassoy, Pierre ;
Butler-Browne, Gillian ;
Lamaze, Christophe ;
Blouin, Cedric M. .
NATURE COMMUNICATIONS, 2019, 10 (1)
[10]   Caveolin-3 null mice show a loss of caveolae, changes in the microdomain distribution of the dystrophin-glycoprotein complex, and T-tubule abnormalities [J].
Galbiati, F ;
Engelman, JA ;
Volonte, D ;
Zhang, XL ;
Minetti, C ;
Li, MM ;
Hou, H ;
Kneitz, B ;
Edelmann, W ;
Lisanti, MP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (24) :21425-21433