| Literature DB >> 29017447 |
Stefanie Scheiper1, Brigitte Hertel2, Britt-Maria Beckmann3, Stefan Kääb3, Gerhard Thiel2, Silke Kauferstein4.
Abstract
BACKGROUND: Mutations in the KCNJ2 gene encoding the ion channel Kir2.1 have been linked to the Andersen-Tawil syndrome (ATS). Molecular genetic screening performed in a family exhibiting clinical ATS phenotypes unmasked a novel sequence variant (c.434A > G, p.Y145C) in this gene. The aim of this study was to investigate the effect of this variant on Kir2.1 ion channel functionality.Entities:
Keywords: Andersen-Tawil syndrome; Functional characterization; KCNJ2 mutation; Potassium channel Kir2.1
Mesh:
Substances:
Year: 2017 PMID: 29017447 PMCID: PMC5634867 DOI: 10.1186/s12881-017-0472-x
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Clinical phenotypes of the family members carrying the heterozygous mutation p.Y145C in the KCNJ2 gene
| Family member | Carrier | Year of birth | Cardiac symptoms | Age of onset | Muscular symptoms | Age of onset | Dysmorphic features |
|---|---|---|---|---|---|---|---|
| II. 2 | Yes | 1958 | Syncope, Resting ECG with U-waves, VPB during exercise stress test starting at a heart rate of 130 bpm | 14 | Mild periodic paralysis of proximal upper limbs | 55 | Small chin |
| III. 2 | No | 1982 | none | – | none | – | none |
| III. 3 | Yes | 1984 | Resting ECG with U-waves | n/a | – | n/a | Small chin |
| III. 4 | Yes | 1990 | Resting ECG with U-waves, VPB during exercise stress test starting at a heart rate of 120 bpm | 11 | Sporadic paralysis, initially only legs and later also arms affected (every few weeks to months), immediate improvement following K- and Mg- substitution | 11 | Very small chin, low-set ears, mild syndactyly |
| III. 5 | Yes | 1993 | Resting ECG with U-waves | n/a | – | n/a | Small chin, hypertelorism, mild syndactyly |
bpm beats per minute, VPB ventricular premature beats, n/a not applicable
Fig. 1Amino acid position Y145 of the Kir2.1 channel is highly conserved in mammals. a Schematic representation of the localization of variant Y145C in a Kir2.1 channel subunit. The detected mutation (indicated by the red dot) results in an amino acid substitution in the pore forming region (H5). b Alignment of the Kir2.1 channel amino acid sequence among mammals. The alignment displays a partial sequence in human (Homo sapiens), mouse (Mus musculus), dog (Canis lupus familiaris), pig (Sus scrofa) and cattle (Bos taurus)
Fig. 2The mutant p.Y145C was detected in a family with diagnosed ATS. a Pedigree of the family. Filled symbols indicate clinically affected individuals. +/− represents heterozygous carriers of mutation Y145C in KCNJ2 and −/− indicates exclusion of Y145C. Crossed symbols represent deceased family members. b ATS index patient (arrow in a) exhibiting typical clinical symptoms such as small chin, low-set ears and hypertelorism (not shown) c Prominent U-waves in resting ECG (scale 50 mm/s) of the ATS patient. Reprinted with permission from Beckmann and Kääb as well as the Hans Marseille Verlag [21]
Fig. 3Representative currents and current/voltage relations recorded from HEK293 cells expressing different Kir2.1 constructs. a Current traces of HEK293 cells expressing WT Kir2.1 channels or the Y145C mutant alone. WT and mutant were also co-transfected in a 1/1 or 1/3 ratio (wt/mut). b Mean current/voltage relations (± standard deviation) from measurements as in a from HEK293 cells expressing WT (●), mutant (○) or a 1:1 (▲) or 1:3 mixture (△) of WT and mutant channels. The mean value of the WT current at −120 mV is significantly higher (p < 0.01, **) than any of the other constructs. At −120 mV, co-expression of WT and mutant generates an inward current, which is significantly higher (p < 0.05; *) than those measured with the mutant channel only
Fig. 4Cellular localization of GFP tagged wild type and mutant Kir2.1 channels expressed in HEK293 cells. a EGFP fluorescence signal of a cell expressing Kir2.1 wild type. b EGFP fluorescence signal of a cell expressing Kir2.1 mutant p.Y145C. Both images were taken in the equatorial plane of cells using confocal laser scanning microscopy