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Timothy syndrome 1 (TS1) is a multi-organ form of long QT syndrome associated with life-threatening cardiac arrhythmias, the organ-level dynamics of which remain unclear. In this study, we developed and characterized a novel porcine model of TS1 carrying the causative p.Gly406Arg mutation in , known to impair Ca1.2 channel inactivation. Our model fully recapitulated the human disease with prolonged QT interval and arrhythmic mortality. Electroanatomical mapping revealed the presence of a functional substrate vulnerable to reentry, stemming from an unforeseen constitutional slowing of cardiac activation. This signature substrate of TS1 was reliably identified using the reentry vulnerability index, which, we further demonstrate, can be used as a benchmark for assessing treatment efficacy, as shown by testing of multiple clinical and preclinical anti-arrhythmic compounds. Notably, in vitro experiments showed that TS1 cardiomyocytes display Ca overload and decreased peak I current, providing a rationale for the arrhythmogenic slowing of impulse propagation in vivo.
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http://dx.doi.org/10.1038/s44161-023-00393-w | DOI Listing |
JACC Case Rep
July 2025
Division of Pediatric Cardiology, Department of Pediatrics, West Virginia University School of Medicine and West Virginia University Children's Heart Center, Morgantown, West Virginia, USA. Electronic address:
The CACNA1C gene encodes for the Ca1.2 voltage-gated calcium channel. De novo genetic variation in this gene is associated with Timothy syndrome (long QT syndrome type 8) and a wide range of other cardiac phenotypes.
View Article and Find Full Text PDFCereb Cortex
June 2025
School of Biosciences, Cardiff University, Museum Avenue, Cardiff CF10 3AX, United Kingdom.
Timothy syndrome (TS) is a rare genetic disorder caused by mutations in the CACNA1C gene, which encodes the L-type calcium channel α1 CaV1.2 subunit. While it is expressed throughout the body, the most serious symptoms are cardiac and neurological.
View Article and Find Full Text PDFTimothy syndrome (TS) is a multisystem disorder with autistic-like features, seizures and arrhythmia as the main symptoms. Most TS cases are caused by a single amino acid substitution G406R in the gene that encodes the pore-forming subunit of the voltage-gated L-type calcium channel Ca 1.2.
View Article and Find Full Text PDFDiagnostics (Basel)
June 2025
Faculty of Medicine, 'Grigore T. Popa' University of Medicine and Pharmacy, 700115 Iasi, Romania.
The electrocardiogram (ECG) remains a cornerstone of modern cardiology, providing rapid, non-invasive, and widely accessible diagnostic insights. While ECG interpretation is an essential skill for clinicians, certain patterns can be subtle or atypical, posing diagnostic challenges. In our previous review (doi.
View Article and Find Full Text PDFJ Cardiovasc Transl Res
June 2025
Department of Pediatric and Adolescent Medicine/Division of Pediatric Cardiology, Mayo Clinic, Rochester, MN, USA.
Genetic variants in CACNA1C are associated with several cardiac and neurologic conditions. We conducted a retrospective review of patients evaluated and treated who presented with a pathogenic (P), likely pathogenic (LP), or variant of uncertain significance (VUS) in CACNA1C. Among 4,774 patients, 49 had P, LP, or VUS variants (55% female; median age 15 years; mean QTc 481 ms).
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