Background Timothy syndrome (TS) is a rare multisystem genetic disorder characterized by a myriad of abnormalities, including QT prolongation, syndactyly, and neurologic symptoms. The predominant genetic causes are recurrent de novo missense mutations in exon 8/8A of the CACNA1C-encoded L-type calcium channel; however, some cases remain genetically elusive. Objective The purpose of this study was to identify the genetic cause of TS in a patient who did not harbor a CACNA1C mutation in exon 8/A, and was negative for all other plausible genetic substrates. Methods Diagnostic exome sequencing was used to identify the genetic substrate responsible for our case of TS. The identified mutation was characterized using whole-cell patc...
International audiencePurpose:CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calc...
SummaryLong-QT syndrome mutations can cause syncope and sudden death by prolonging the cardiac actio...
Abstract T-type calcium channelopathies encompass a group of human disorders either ca...
Timothy syndrome (TS) is a very rare multisystem disorder almost exclusively associated with mutatio...
Timothy syndrome (TS) is a rare pleiotropic disorder associated with long QT syndrome, syndactyly, d...
<div><p>Mutations in <i>CACNA1C</i> that increase current through the Ca<sub>V</sub>1.2 L-type Ca<su...
Mutations in CACNA1C that increase current through the CaV1.2 L-type Ca2+ channel underlie rare form...
Using exome sequencing and linkage analysis in a three-generation family with a unique dominant myoc...
Timothy syndrome (TS) is a very rare multisystem disorder almost exclusively associated with mutatio...
Timothy syndrome (TS) is a very rare multisystem disorder almost exclusively associated with mutatio...
Background—Timothy syndrome (TS) is a disease of excessive cellular Ca2 entry and life-threatening ...
Abstract Background Pathogenic variants in the L‐type Ca2+ channel gene CACNA1C cause a multi‐system...
AbstractVoltage-gated calcium channels (VGCCs) mediate calcium entry into excitable cells in respons...
International audienceCANAC1C encodes for the main cardiac L-type calcium channel and mutations on i...
We recently reported the identification of a de novo single nucleotide variant in exon 9 of CACNA1C...
International audiencePurpose:CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calc...
SummaryLong-QT syndrome mutations can cause syncope and sudden death by prolonging the cardiac actio...
Abstract T-type calcium channelopathies encompass a group of human disorders either ca...
Timothy syndrome (TS) is a very rare multisystem disorder almost exclusively associated with mutatio...
Timothy syndrome (TS) is a rare pleiotropic disorder associated with long QT syndrome, syndactyly, d...
<div><p>Mutations in <i>CACNA1C</i> that increase current through the Ca<sub>V</sub>1.2 L-type Ca<su...
Mutations in CACNA1C that increase current through the CaV1.2 L-type Ca2+ channel underlie rare form...
Using exome sequencing and linkage analysis in a three-generation family with a unique dominant myoc...
Timothy syndrome (TS) is a very rare multisystem disorder almost exclusively associated with mutatio...
Timothy syndrome (TS) is a very rare multisystem disorder almost exclusively associated with mutatio...
Background—Timothy syndrome (TS) is a disease of excessive cellular Ca2 entry and life-threatening ...
Abstract Background Pathogenic variants in the L‐type Ca2+ channel gene CACNA1C cause a multi‐system...
AbstractVoltage-gated calcium channels (VGCCs) mediate calcium entry into excitable cells in respons...
International audienceCANAC1C encodes for the main cardiac L-type calcium channel and mutations on i...
We recently reported the identification of a de novo single nucleotide variant in exon 9 of CACNA1C...
International audiencePurpose:CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calc...
SummaryLong-QT syndrome mutations can cause syncope and sudden death by prolonging the cardiac actio...
Abstract T-type calcium channelopathies encompass a group of human disorders either ca...