Allosteric changes in protein stability and dynamics as pathogenic mechanism for calmodulin variants not affecting Ca2+coordinating residues

被引:1
作者
Holler, Christina Vallentin [1 ,4 ]
Petersson, Nina Moller [5 ]
Brohus, Malene [1 ]
Niemela, Miska Aleksanteri [2 ]
Iversen, Emil Drivsholm [1 ]
Overgaard, Michael Toft [1 ]
Iwai, Hideo [2 ,6 ]
Wimmer, Reinhard [1 ,3 ]
机构
[1] Aalborg Univ, Dept Chem & Biosci, Frederik Bajers Vej 7H, DK-9220 Aalborg, Denmark
[2] Univ Helsinki, Inst Biotechnol, POB 65, FIN-00014 Helsinki, Finland
[3] Aalborg Univ, Frederik Bajers Vej 7H, DK-9220 Aalborg, Denmark
[4] Biogenity, Niels Jernes Vej 10, DK-9220 Aalborg, Denmark
[5] Agilent Technol, Prod Vej 42, DK-2600 Glostrup, Denmark
[6] Orion Corp Orion Pharm, Orionintie 1,POB 65, FI-02200 Espoo, Finland
基金
芬兰科学院;
关键词
Calmodulin; Cardiac arrhythmia; Calcium-sensing; Calmodulinopathy; Folbigg case; VENTRICULAR-TACHYCARDIA; BACKBONE DYNAMICS; NMR; HELIX; BINDING; MULTIDOMAIN; TERMINATION; ASSIGNMENT; MUTATIONS;
D O I
10.1016/j.ceca.2023.102831
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Mutations in the small, calcium-sensing, protein calmodulin cause cardiac arrhythmia and can ultimately prove lethal. Here, we report the impact of the G113R variant on the structure and dynamics of the calmodulin molecule, both in the presence and in the absence of calcium. We show that the mutation introduces minor changes into the structure of calmodulin and that it changes the thermostability and thus the degree of foldedness at human body temperature. The mutation also severely impacts the intramolecular mobility of calmodulin, especially in the apo form. Glycine 113 acts as an alpha-helical C-capping residue in both apo/ - and Ca2+/ calmodulin, but its exchange to arginine has very different effects on the apo and Ca2+ forms. The majority of arrhythmogenic calmodulin variants identified affects residues in the Ca2+ coordinating loops of the two Cdomain EF-Hands, causing a 'direct impact on Ca2+ binding'. However, G113R lies outside a Ca2+ coordinating loop and acts differently and more similar to the previously characterized arrhythmogenic N53I. Therefore, we suggest that altered apo/CaM dynamics may be a novel general disease mechanism, defining low-calcium target affinity - or Ca2+ binding kinetics - critical for timely coordination of essential ion-channels in the excitationcontraction cycle.
引用
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页数:10
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