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Loss of zebrafish atp6v1e1b, encoding a subunit of vacuolar ATPase, recapitulates human ARCL type 2C syndrome and identifies multiple pathobiological signatures
- Source :
- PLoS Genetics, Vol 17, Iss 6, p e1009603 (2021), PLOS GENETICS, PLoS Genetics
- Publication Year :
- 2021
- Publisher :
- Public Library of Science (PLoS), 2021.
-
Abstract
- The inability to maintain a strictly regulated endo(lyso)somal acidic pH through the proton-pumping action of the vacuolar-ATPases (v-ATPases) has been associated with various human diseases including heritable connective tissue disorders. Autosomal recessive (AR) cutis laxa (CL) type 2C syndrome is associated with genetic defects in the ATP6V1E1 gene and is characterized by skin wrinkles or loose redundant skin folds with pleiotropic systemic manifestations. The underlying pathological mechanisms leading to the clinical presentations remain largely unknown. Here, we show that loss of atp6v1e1b in zebrafish leads to early mortality, associated with craniofacial dysmorphisms, vascular anomalies, cardiac dysfunction, N-glycosylation defects, hypotonia, and epidermal structural defects. These features are reminiscent of the phenotypic manifestations in ARCL type 2C patients. Our data demonstrates that loss of atp6v1e1b alters endo(lyso)somal protein levels, and interferes with non-canonical v-ATPase pathways in vivo. In order to gain further insights into the processes affected by loss of atp6v1e1b, we performed an untargeted analysis of the transcriptome, metabolome, and lipidome in early atp6v1e1b-deficient larvae. We report multiple affected pathways including but not limited to oxidative phosphorylation, sphingolipid, fatty acid, and energy metabolism together with profound defects on mitochondrial respiration. Taken together, our results identify complex pathobiological effects due to loss of atp6v1e1b in vivo.<br />Author summary Cutis laxa syndromes are pleiotropic disorders of the connective tissue, characterized by skin redundancy and variable systemic manifestations. Cutis laxa syndromes are caused by pathogenic variants in genes encoding structural and regulatory components of the extracellular matrix or in genes encoding components of cellular trafficking, metabolism, and mitochondrial function. Pathogenic variants in genes coding for vacuolar-ATPases, a multisubunit complex responsible for the acidification of multiple intracellular vesicles, cause type 2 cutis laxa syndromes, a group of cutis laxa subtypes further characterized by neurological, skeletal, and rarely cardiopulmonary manifestations. To investigate the pathomechanisms of vacuolar-ATPase dysfunction, we generated zebrafish models that lack a crucial subunit of the vacuolar-ATPases. The mutant zebrafish models show morphological and functional features reminiscent of the phenotypic manifestations in cutis laxa patients carrying pathogenic variants in ATP6V1E1. In-depth analysis at multiple -omic levels identified biological signatures that indicate impairment of signaling pathways, lipid metabolism, and mitochondrial respiration. We anticipate that these data will contribute to a better understanding of the pathogenesis of cutis laxa syndromes and other disorders involving defective v-ATPase function, which may eventually improve patient treatment and management.
- Subjects :
- Life Cycles
Cancer Research
LYSOSOMAL PH
Gene Expression
PROTEIN
Mitochondrion
QH426-470
Biochemistry
Cutis Laxa
Oxidative Phosphorylation
Transcriptome
PATHWAY
Larvae
0302 clinical medicine
Cell Signaling
Macromolecular Structure Analysis
Medicine and Health Sciences
Protein Isoforms
Genetics(clinical)
Zebrafish
Energy-Producing Organelles
Genetics (clinical)
Skin
Notch Signaling
0303 health sciences
Lipid Analysis
biology
Ecology
Eukaryota
Animal Models
Syndrome
Lipidome
Hypotonia
Mitochondria
3. Good health
Cell biology
Experimental Organism Systems
Osteichthyes
Larva
Vertebrates
Metabolome
Cellular Structures and Organelles
medicine.symptom
Research Article
Signal Transduction
KEY ROLE
Vacuolar Proton-Translocating ATPases
Evolution
Longevity
Endosomes
Bioenergetics
Research and Analysis Methods
03 medical and health sciences
Model Organisms
Behavior and Systematics
medicine
Genetics
Animals
Metabolomics
Humans
Abnormalities, Multiple
Vesicles
RENAL TUBULAR-ACIDOSIS
Molecular Biology
Ecology, Evolution, Behavior and Systematics
030304 developmental biology
MUTATIONS
Organisms
Biology and Life Sciences
V-ATPASE
Epithelial Cells
Cell Biology
Zebrafish Proteins
medicine.disease
biology.organism_classification
Sphingolipid
GENE
Disease Models, Animal
Fish
Metabolism
Gene Expression Regulation
Lipidomics
Animal Studies
INTERNALIZATION
Lysosomes
Zoology
030217 neurology & neurosurgery
MENTAL-RETARDATION
Developmental Biology
Cutis laxa
Subjects
Details
- Language :
- English
- ISSN :
- 15537404 and 15537390
- Volume :
- 17
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- PLoS Genetics
- Accession number :
- edsair.doi.dedup.....6ca9f9890006bff9f66c77d97c377032