A Genetic Model Therapy Proposes a Critical Role for Liver Dysfunction in Mitochondrial Biology and Disease
Sabharwal, A.; Wishman, M. D.; Cervera, R. L.; Serres, M. R.; Anderson, J. L.; Treichel, A. J.; Ichino, N.; Liu, W.; Yang, J.; Ding, Y.; Deng, Y.; Farber, S. A.; Clark, K. J.; Xu, X.; Ekker, S. C.
Show abstract
The clinical and largely unpredictable heterogeneity of phenotypes in patients with mitochondrial disorders demonstrates the ongoing challenges in the understanding of this semi-autonomous organelle in biology and disease. Here we present a new animal model that recapitulates key components of Leigh Syndrome, French Canadian Type (LSFC), a mitochondrial disorder that includes diagnostic liver dysfunction. LSFC is caused by allelic variations in the Leucine Rich Pentatricopeptide repeat-containing motif (LRPPRC) gene. LRPPRC has native functions related to mitochondrial mRNA polyadenylation and translation as well as a role in gluconeogenesis. We used the Gene-Breaking Transposon (GBT) cassette to create a revertible, insertional mutant zebrafish line in the LRPPRC gene. lrpprc zebrafish homozygous mutants displayed impaired muscle development, liver function and lowered levels of mtDNA transcripts and are lethal by 12dpf, all outcomes similar to clinical phenotypes observed in patients. Investigations using an in vivo lipidomics approach demonstrated accumulation of non-polar lipids in these animals. Transcript profiling of the mutants revealed dysregulation of clinically important nuclearly encoded and mitochondrial transcripts. Using engineered liver-specific rescue as a genetic model therapy, we demonstrate survival past the initial larval lethality, as well as restored normal gut development, mitochondrial morphology and triglyceride levels functionally demonstrating a critical role for the liver in the pathophysiology of this model of mitochondrial disease. Understanding the molecular mechanism of the liver-mediated genetic rescue underscores the potential to improve the clinical diagnostic and therapeutic developments for patients suffering from these devastating disorders.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Loss of a subunit of vacuolar ATPase identifies unexpected biological signatures of reduced organelle acidification in vivo 95%
- The USH3A causative gene clarin1 functions in Muller glia to maintain retinal photoreceptors 94%
- Transcriptional control of visual neural circuit development by GS homeobox 1 94%
Similar papers in this journal
- Fragile X Premutation rCGG Repeats Impairs Synaptic Growth and Synaptic Transmission at Drosophila larval Neuromuscular Junction 94%
- C9orf72-associated arginine-rich dipeptide repeats induce RNA-dependent accumulation of Staufen in nucleus 94%
- A dWDR45 knock-out Drosophila model to decipher the role of autophagy in BPAN 92%
Similar papers in this journal
- Imaging cytoplasmic lipid droplets in vivo with fluorescent perilipin 2 and perilipin 3 knockin zebrafish 96%
- Disturbed retinoid metabolism upon loss of rlbp1a impairs cone function and leads to subretinal lipid deposits and photoreceptor degeneration in the zebrafish retina 95%
- Zebrafish Cre/lox regulated UFlip alleles generated by CRISPR/Cas targeted integration provide cell-type specific conditional gene inactivation 95%
Similar papers in this journal
- Tfam knockdown results in reduction of mtDNA copy number, OXPHOS deficiency and abnormalities in zebrafish embryos 95%
- Assessment of autism zebrafish mutant models using a high-throughput larval phenotyping platform 94%
- Canonical Wnt and TGF-β/BMP signaling enhance melanocyte regeneration and suppress invasiveness, migration, and proliferation of melanoma cells 93%