Key result
Homozygous expression of the naturally occurring PLN-L39stop mutation results in a complete loss of phospholamban protein and causes lethal dilated cardiomyopathy requiring cardiac transplantation.
Why the study?
Does a loss-of-function PLN mutation (PLN null) cause dilated cardiomyopathy and heart failure in humans?
Observational (n=106)
No
Does a loss-of-function PLN mutation (PLN null) cause dilated cardiomyopathy and heart failure in humans?
Unlike in mouse models where PLN ablation is beneficial, a naturally occurring loss-of-function PLN mutation in humans leads to lethal dilated cardiomyopathy, revealing a critical species difference.
PLN loss may be harmful in humans; challenges mouse model benefits and leaves targeted therapies unresolved.
In human disease and experimental animal models, depressed Ca2+ handling in failing cardiomyocytes is widely attributed to impaired sarcoplasmic reticulum (SR) function. In mice, disruption of the PLN gene encoding phospholamban (PLN) or expression of dominant-negative PLN mutants enhances SR and cardiac function, but effects of PLN mutations in humans are unknown. Here, a T116G point mutation, substituting a termination codon for Leu-39 (L39stop), was identified in two families with hereditary heart failure. The heterozygous individuals exhibited hypertrophy without diminished contractile performance. Strikingly, both individuals homozygous for L39stop developed dilated cardiomyopathy and heart failure, requiring cardiac transplantation at ages 16 and 27. An over 50% reduction in PLN mRNA and no detectable PLN protein were noted in one explanted heart. The expression of recombinant PLN-L39stop in human embryonic kidney (HEK) 293 cells and adult rat cardiomyocytes showed no PLN inhibition of SR Ca2+-ATPase and the virtual absence of stable PLN expression; where PLN was expressed, it was misrouted to the cytosol or plasma membrane. These findings describe a naturally-occurring loss-of-function human PLN mutation (PLN null). In contrast to reported benefits of PLN ablation in mouse heart failure, humans lacking PLN develop lethal dilated cardiomyopathy.
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Haghighi et al. (2003) conducted an observational in Dilated cardiomyopathy (n=106). PLN-L39stop mutation (PLN null) vs. Wild-type PLN was evaluated on Development of dilated cardiomyopathy and heart failure. Homozygous expression of the naturally occurring PLN-L39stop mutation results in a complete loss of phospholamban protein and causes lethal dilated cardiomyopathy requiring cardiac transplantation.
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