| Literature DB >> 26502825 |
Katharina Ronstedt1, Damien Sternberg2, Silvia Detro-Dassen3, Thomas Gramkow1, Birgit Begemann1, Toni Becher1, Petra Kilian1, Matthias Grieschat1, Jan-Philipp Machtens4, Günther Schmalzing3, Martin Fischer1, Christoph Fahlke4.
Abstract
Mutations in the muscle chloride channel gene (CLCN1) cause myotonia congenita, an inherited condition characterized by muscle stiffness upon sudden forceful movement. We here studied the functional consequences of four disease-causing mutations that predict amino acid substitutions Q43R, S70L, Y137D and Q160H. Wild-type (WT) and mutant hClC-1 channels were heterologously expressed as YFP or CFP fusion protein in HEK293T cells and analyzed by whole-cell patch clamp and fluorescence recordings on individual cells. Q43R, Y137D and Q160H, but not S70L reduced macroscopic current amplitudes, but left channel gating and unitary current amplitudes unaffected. We developed a novel assay combining electrophysiological and fluorescence measurements at the single-cell level in order to measure the probability of ion channel surface membrane insertion. With the exception of S70L, all tested mutations significantly reduced the relative number of homodimeric hClC-1 channels in the surface membrane. The strongest effect was seen for Q43R that reduced the surface insertion probability by more than 99% in Q43R homodimeric channels and by 92 ± 3% in heterodimeric WT/Q43R channels compared to homodimeric WT channels. The new method offers a sensitive approach to investigate mutations that were reported to cause channelopathies, but display only minor changes in ion channel function.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26502825 PMCID: PMC4621517 DOI: 10.1038/srep15382
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Myotonia-associated mutations modify mean current amplitudes in heterologous expression system without reducing protein expression levels.
(a) Location of the tested mutations in a topology model of the chloride channel protein modified from Dutzler et al.5 (b) Representative currents of WT and mutant hClC-1 recorded under symmetric chloride conditions. (c) Voltage dependence of mean instantaneous current amplitudes (means ± SEM from 6–18 experiments). (d) Relative expression levels of WT and mutant hClC-1 channels given from relative fluorescent values (lower panel, means ± SEM from 5 experiments) and representative fluorescence scan of a SDS-PAGE gel of YFP-tagged WT and mutant hClC-1 channels in the total cleared lysate of cells that were transfected with equal amounts of plasmid DNA. The expected molecular mass of mYFP-hClC-1 is 136 kDa. In each experiment lysate samples were adjusted to equal total protein amounts before loading the gel. (Student’s two-tailed t-test with *p < 0.05 and ***p < 0.001).
Clinical and molecular data of the investigated patients.
| Family Nr | Familymember | Sex | Age | Symptomatic and/or anamnestic data | Electrophysiology data | Other data | Molecular data |
|---|---|---|---|---|---|---|---|
| 366 | index case | F | 41 | muscle stiffness that is alleviated by exercise | nd | c.128 A >G p.Gln43Arg ( | |
| father | m | — | asymptomatic | nd | c.128 A >G p.Gln43Arg (Q43R, exon 1) | ||
| mother | f | — | asymptomatic | nd | c.180 +3 A >T (intron 1) | ||
| 427 | index case | M | 22 | age at onset 15, severe muscle stiffness with moderate myalgia upon movement onset, ameliorated during continuation of effort, cold-insensitive | myotonic bursts, abundant (left short abductor pollicis, left biceps) or rare (left quadriceps), repeated short effort test: type III response | [CK] 424 UI absence of DMPK expansion | c.209 C >T p.Ser70Leu ( |
| father | m | — | asymptomatic | nd | c.209 C >T p.Ser70Leu (exon 2) | ||
| mother | f | — | asymptomatic | nd | c.1471 +1 G >A (intron 13) | ||
| 234 | index case | M | 29 | muscle stiffness that is alleviated by exercise | nd | c.409 T >G P.Tyr137Asp ( | |
| father | m | — | asymptomatic | nd | nd | ||
| mother | f | — | asymptomatic | nd | nd | ||
| 457 | index case | M | 37 | myotonia with marked amelioration during exercise | nd | c.409 T >G P.Tyr137Asp ( | |
| affected sibling | M | — | symptoms identical to index case | nd | nd | ||
| father | m | — | reported as affected on genetic tree, however no precise data available | nd | c.409 T >G P.Tyr137Asp (Y137D, exon 3) No other point mutation (all | ||
| mother | f | — | asymptomatic | nd | nd | ||
| 1565 | index case | F | 32 | myotonia | myotonic bursts | absence of DMPK expansion | c.409 T >G P.Tyr137Asp ( |
| father | m | — | nd | nd | nd | ||
| mother | f | — | nd | nd | nd | ||
| 1581 | index case | M | 35 | age at onset 18, stiffness and myalgia the morning at awakening with correction by warm—up, muscle hypertrophy | myotonic bursts, abundant | [CK] 400–530 UI | c.409 T >G P.Tyr137Asp ( |
| father | m | — | asymptomatic | nd | nd | ||
| mother | f | — | asymptomatic | nd | nd | ||
| 1541 | index case | M | 57 | feeling of muscle stiffness needing a warm-up, muscle hypertrophy | myotonic bursts | c.480 G >C p.Gln160His ( | |
| father | m | — | nd | nd | nd | ||
| mother | f | — | asymptomatic | nd | nd |
Figure 2Functional properties of homodimeric mutant channels.
(a,b) Mean single-channel current amplitudes at −155 mV (a) and absolute open probabilities at +55 mV (b) as obtained from non-stationary noise analysis for mutant hClC-1 (means ± SEM from 4–5 experiments). Solid lines represent WT unitary current amplitude and absolute open probability. (c) Representative tail currents from experiment to determine the voltage dependence of the slow common gate. (d) Voltage dependence of the probability of WT or mutant hClC-1 channels to be open. (e,f) Activation curves of the slow (e) and the fast (f) gate of WT or mutant hClC-1 channels (means ± SEM from 7–14 experiments).
Figure 3Simultaneous investigation of channel expression and surface membrane insertion.
(a,b) Representative recording of the fluorescence (gray lines) and current (black lines) of cells expressing WT (a) or Q43R hClC-1 channels (b). (c,d) Correlation between instantaneous current amplitudes at −135 mV and whole-cell fluorescences for WT and mutant hClC-1. Lines represent linear regressions (regression coefficients are: 0.47 (WT) 0.77 (S70L); 0.32 (Y137D); 0.57 (Q160H); 0.35 (Q43R)). (e,f) Slopes of linear regression lines reveal relative membrane insertion rates for WT and mutant hClC-1 (means ± SEM from 13–23 experiments). Membrane insertion is significantly reduced by Q43R, Y137D and Q160H, but not by S70L (***Student’s two-tailed t-test with p < 0.001).
Figure 4Heterodimeric channels assembled from WT and Q43R hClC-1 exhibit a reduced surface membrane insertion probability.
(a,b) Confocal image (a) and corresponding profile intensities (b) for MDCK II cells co-expressing mYFP tagged WT and CFP-tagged Q43R hClC-1. Cells were co-transfected with 0.2 μg pSVL-mYFP-WT hClC-1 and 0.5 μg pSVL-mCFP-Q43R hClC-1. (c) Correlation between instantaneous current amplitude at −135 mV and whole-cell fluorescence for cells expressing WT or Q43R homodimers, or WT-Q43R or Q43R-WT heterodimeric concatamers. (d) Relative membrane insertion rates of homo- and heterodimers (means ± SEM from 11–23 experiments) (Student’s two-tailed t-test with *p < 0.05 and ***p < 0.001). (e) Plot of the current by YFP fluorescence ratio versus the CFP fluorescence from 21 cells co-expressing WT hClC-1-mYFP and Q43R hClC-1-CFP. I/FYFP was normalized to values obtained for WT hClC-1-YFP in absence of Q43R hClC-1-CFP (fraction of CFP = 0). The y-axis intercept is determined by the mean current by fluorescence ratio from 29 cells that exclusively express WT hClC-1-YFP (shown as mean ± SEM in red). (f) Distribution of estimated surface membrane insertion probabilities from 50,000 bootstrap samples of the original data. Histograms have been normalized such that the integral over the range is 1 and fitted with a Gaussian function (μ=0.081, σ = 0.034).
Figure 5hClC-1 oligomerization is not impaired by Q43R.
(a) SDS-PAGE gel (4–10% gradient) of WT and Q43R hClC-1 after expression in Xenopus oocytes and purification via StrepTactin chromatography. Proteins were visualized by scanning of plasma membrane-bound fluorescence (upper panel) or 35S-labeled total protein (lower panel). (b) Oligomeric state of WT and mutant hClC-1 channels. Indicated hClC-1 proteins were purified via metal affinity chromatography, resolved by BN-PAGE (4–12% gradient) and visualized by scanning of YFP fluorescence (upper panel) and 35S-labeled total protein (lower panel). The protein migration is shown both under native conditions and following partial denaturation after a 1-h incubation with 0.1% SDS at 37 °C, as indicated. The gray ovals without and with yellow balls schematically illustrate YFP-less and YFP-fused hClC-1, respectively, to indicate the native dimeric and denatured protomeric states of the corresponding protein bands. The data shown represent samples run on the same SDS-PAGE gel or BN-PAGE gel; irrelevant lanes were cropped from the figure as indicated by vertical lines. The respective source images of the individual gels are shown in Supplemental Fig. S3a and b.