Timothy syndrome (TS) is a rare pleiotropic disorder associated with long QT syndrome, syndactyly, dysmorphic features, and neurological symptoms. Several variants in exon 8 or 8a of CACNA1C, a gene encoding the α-subunit of voltage-gated Ca2+ channels (Cav1.2), are known to cause classical TS. We identified a p.R412M (exon 9) variant in an atypical TS case. The aim of this study was to examine the functional effects of CACNA1C p.R412M on CaV1.2 in comparison with those of p.G406R. The index patient was a 2-month-old female infant who suffered from a cardio-pulmonary arrest in association with prolonged QT intervals. She showed dysmorphic facial features and developmental delay, but not syndactyly. Interestingly, she also presented recurren...
Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often be...
Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often be...
Timothy Syndrome (TS) arises from a point mutation in the human voltage-gated L-type Ca2+ channel (C...
Mutations in CACNA1C that increase current through the CaV1.2 L-type Ca2+ channel underlie rare form...
<div><p>Mutations in <i>CACNA1C</i> that increase current through the Ca<sub>V</sub>1.2 L-type Ca<su...
International audiencePurpose:CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calc...
CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calcium channel expressed in human...
Background Timothy syndrome (TS) is a rare multisystem genetic disorder characterized by a myriad...
Timothy syndrome 1 (TS1) is a rare genetic disorder characterized by multisystem abnormalities incl...
Abstract Background Pathogenic variants in the L‐type Ca2+ channel gene CACNA1C cause a multi‐system...
Timothy syndrome (TS), also referred to as syndactylyassociated long QT syndrome (LQTS) or LQT8, is ...
International audienceCANAC1C encodes for the main cardiac L-type calcium channel and mutations on i...
AbstractCaV1.2, the cardiac L-type calcium channel, is important for excitation and contraction of t...
Two paternally-inherited missense variants in CACNA1H were identified and characterized in a 6-year-...
Ca(V)1.2, the cardiac L-type calcium channel, is important for excitation and contraction of the hea...
Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often be...
Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often be...
Timothy Syndrome (TS) arises from a point mutation in the human voltage-gated L-type Ca2+ channel (C...
Mutations in CACNA1C that increase current through the CaV1.2 L-type Ca2+ channel underlie rare form...
<div><p>Mutations in <i>CACNA1C</i> that increase current through the Ca<sub>V</sub>1.2 L-type Ca<su...
International audiencePurpose:CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calc...
CACNA1C encodes the alpha-1-subunit of a voltage-dependent L-type calcium channel expressed in human...
Background Timothy syndrome (TS) is a rare multisystem genetic disorder characterized by a myriad...
Timothy syndrome 1 (TS1) is a rare genetic disorder characterized by multisystem abnormalities incl...
Abstract Background Pathogenic variants in the L‐type Ca2+ channel gene CACNA1C cause a multi‐system...
Timothy syndrome (TS), also referred to as syndactylyassociated long QT syndrome (LQTS) or LQT8, is ...
International audienceCANAC1C encodes for the main cardiac L-type calcium channel and mutations on i...
AbstractCaV1.2, the cardiac L-type calcium channel, is important for excitation and contraction of t...
Two paternally-inherited missense variants in CACNA1H were identified and characterized in a 6-year-...
Ca(V)1.2, the cardiac L-type calcium channel, is important for excitation and contraction of the hea...
Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often be...
Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often be...
Timothy Syndrome (TS) arises from a point mutation in the human voltage-gated L-type Ca2+ channel (C...