TY - JOUR
T1 - Gain-of-function mutation in ubiquitin ligase KLHL24 causes desmin degradation and dilatation in hiPSC-derived engineered heart tissues
AU - Vermeer, Mathilde Csc
AU - Bolling, Maria C
AU - Bliley, Jacqueline M
AU - Arevalo Gomez, Karla F
AU - Pavez-Giani, Mario G
AU - Kramer, Duco
AU - Romero-Herrera, Pedro H
AU - Westenbrink, B Daan
AU - Diercks, Gilles Fh
AU - van den Berg, Maarten P
AU - Feinberg, Adam W
AU - Silljé, Herman H W
AU - van der Meer, Peter
PY - 2021/9
Y1 - 2021/9
N2 - The start codon c.1A>G mutation in KLHL24, encoding ubiquitin ligase KLHL24, results in the loss of 28 N-terminal amino acids (KLHL24-Delta N28) by skipping the initial start codon. In skin, KLHL24-Delta N28 leads to gain of function, excessively targeting intermediate filament keratin-14 for proteasomal degradation and ultimately causing epidermolysis bullosa simplex (EBS). The majority of patients with EBS are also diagnosed with dilated cardiomyopathy (DCM), but the pathological mechanism in the heart is unknown. As desmin is the cardiac homolog of keratin-14, we hypothesized that KLHL24-Delta N28 leads to excessive degradation of desmin, resulting in DCM. Dynamically loaded engineered heart tissues (dyn-EHTs) were generated from human-induced pluripotent stem cell-derived (hiPSC-derived) cardiomyocytes from 2 patients and 3 nonfamilial controls. Ten-fold lower desmin protein levels were observed in patient-derived dyn-EHTs, in line with diminished desmin levels detected in patients' explanted heart. This was accompanied by tissue dilatation, impaired mitochondrial function, decreased force values, and increased cardiomyocyte stress. HEK293 transfection studies confirmed KLHL24-mediated desmin degradation. KLHL24 RNA interference or direct desmin overexpression recovered desmin protein levels, restoring morphology and function in patient-derived dyn-EHTs. To conclude, presence of KLHL24-Delta 28 in cardiomyocytes leads to excessive degradation of desmin, affecting tissue morphology and function, which can be prevented by restoring desmin protein levels.
AB - The start codon c.1A>G mutation in KLHL24, encoding ubiquitin ligase KLHL24, results in the loss of 28 N-terminal amino acids (KLHL24-Delta N28) by skipping the initial start codon. In skin, KLHL24-Delta N28 leads to gain of function, excessively targeting intermediate filament keratin-14 for proteasomal degradation and ultimately causing epidermolysis bullosa simplex (EBS). The majority of patients with EBS are also diagnosed with dilated cardiomyopathy (DCM), but the pathological mechanism in the heart is unknown. As desmin is the cardiac homolog of keratin-14, we hypothesized that KLHL24-Delta N28 leads to excessive degradation of desmin, resulting in DCM. Dynamically loaded engineered heart tissues (dyn-EHTs) were generated from human-induced pluripotent stem cell-derived (hiPSC-derived) cardiomyocytes from 2 patients and 3 nonfamilial controls. Ten-fold lower desmin protein levels were observed in patient-derived dyn-EHTs, in line with diminished desmin levels detected in patients' explanted heart. This was accompanied by tissue dilatation, impaired mitochondrial function, decreased force values, and increased cardiomyocyte stress. HEK293 transfection studies confirmed KLHL24-mediated desmin degradation. KLHL24 RNA interference or direct desmin overexpression recovered desmin protein levels, restoring morphology and function in patient-derived dyn-EHTs. To conclude, presence of KLHL24-Delta 28 in cardiomyocytes leads to excessive degradation of desmin, affecting tissue morphology and function, which can be prevented by restoring desmin protein levels.
KW - PLURIPOTENT STEM-CELLS
KW - DILATED CARDIOMYOPATHY
KW - SKIN
KW - PATHOGENESIS
KW - ARCHITECTURE
KW - DISORDERS
KW - DISEASE
KW - MUSCLE
U2 - 10.1172/JCI140615
DO - 10.1172/JCI140615
M3 - Article
C2 - 34292882
SN - 0021-9738
VL - 131
JO - The Journal of Clinical Investigation
JF - The Journal of Clinical Investigation
IS - 17
M1 - 140615
ER -