Back to Search
Start Over
Mutation In Tor1Aip1 Encoding Lap1B In A Form Of Muscular Dystrophy: A Novel Gene Related To Nuclear Envelopathies
- Source :
- Neuromuscular Disorders
- Publication Year :
- 2014
- Publisher :
- Aperta, 2014.
-
Abstract
- We performed genome-wide homozygosity mapping and mapped a novel myopathic phenotype to chromosomal region 1q25 in a consanguineous family with three affected individuals manifesting proximal and distal weakness and atrophy, rigid spine and contractures of the proximal and distal interphalangeal hand joints. Additionally, cardiomyopathy and respiratory involvement were noted. DNA sequencing of torsinA-interacting protein 1 (TOR1AIP1) gene encoding lamina-associated polypeptide 1B (LAP1B), showed a homozygous c.186delG mutation that causes a frameshift resulting in a premature stop codon (p.E62fsTer25). We observed that expression of LAP1B was absent in the patient skeletal muscle fibres. Ultrastructural examination showed intact sarcomeric organization but alterations of the nuclear envelope including nuclear fragmentation, chromatin bleb formation and naked chromatin. LAP1B is a type-2 integral membrane protein localized in the inner nuclear membrane that binds to both A- and B-type lamins, and is involved in the regulation of torsinA ATPase. Interestingly, luminal domain-like LAP1 (LULL1)-an endoplasmic reticulum-localized partner of torsinA-was overexpressed in the patient's muscle in the absence of LAP1B. Therefore, the findings suggest that LAP1 and LULL1 might have a compensatory effect on each other. This study expands the spectrum of genes associated with nuclear envelopathies and highlights the critical function for LAP 1B in striated muscle. (C) 2014 Elsevier B.V. All rights reserved.
- Subjects :
- Male
Pathology
family
genetic association
sequence analysis
Myopathy
DNA Mutational Analysis
Fluorescent Antibody Technique
cell nucleus membrane
LAP1B protein, human
nuclear protein
molecular pathology
genetics
Frameshift Mutation
nuclear envelopathy
adult
protein function
Chromatin
Cell biology
Pedigree
TOR1AIP1
Neurology
priority journal
muscle disease
Chromosomal region
histopathology
muscle biopsy
medicine.medical_specialty
phenotype
Nuclear Envelope
Molecular Sequence Data
Microscopy, Electron, Transmission
transmission electron microscopy
case report
stop codon
Humans
Family
human
Amino Acid Sequence
RNA, Messenger
skeletal muscle
lamin B
protein expression
lamin A
gene location
binding site
echography
gene mapping
medicine.disease
molecular dynamics
torsin A interacting protein 1 gene
Cytoskeletal Proteins
carrier protein
gene function
molecular genetics
Neurology (clinical)
Carrier Proteins
disease activity
frameshift mutation
Muscle Fibers, Skeletal
protein binding
Muscular Dystrophies
binding affinity
membrane protein
gene mutation
Muscular dystrophy
Genetics (clinical)
messenger RNA
article
pedigree
Nuclear Proteins
lamina associated polypeptide 1B
ultrastructure
unclassified drug
medicine.anatomical_structure
female
Female
medicine.symptom
Adult
muscular dystrophy
Sarcomeres
Adolescent
protein localization
Biology
Frameshift mutation
TOR1AIP2 protein, human
promoter region
medicine
Inner membrane
controlled study
gene
gene identification
disease association
Skeletal muscle
Membrane Proteins
nucleotide sequence
LAP1
human tissue
clinical feature
Pediatrics, Perinatology and Child Health
pathology
sarcomere
protein determination
metabolism
Lamin
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Neuromuscular Disorders
- Accession number :
- edsair.doi.dedup.....a65cdb164231ca7ff366942fae5bf6ac