TY - JOUR
T1 - A missense mutation in ASRGL1 is involved in causing autosomal recessive retinal degeneration
AU - Biswas, Pooja
AU - Chavali, Venkata Ramana Murthy
AU - Agnello, Giulia
AU - Stone, Everett
AU - Chakarova, Christina
AU - Duncan, Jacque L.
AU - Kannabiran, Chitra
AU - Homsher, Melissa
AU - Bhattacharya, Shomi S.
AU - Naeem, Muhammad Asif
AU - Kimchi, Adva
AU - Sharon, Dror
AU - Iwata, Takeshi
AU - Riazuddin, Shaikh
AU - Reddy, G. Bhanuprakash
AU - Hejtmancik, J. Fielding
AU - Georgiou, George
AU - Riazuddin, S. Amer
AU - Ayyagari, Radha
AU - Riazuddin, Shaikh
N1 - Publisher Copyright: © The Author 2016. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: [email protected].
PY - 2016/6/15
Y1 - 2016/6/15
N2 - Inherited retinal dystrophies are a group of genetically heterogeneous conditions with broad phenotypic heterogeneity. We analyzed a large five-generation pedigree with early-onset recessive retinal degeneration to identify the causative mutation. Linkage analysis and homozygosity mapping combined with exome sequencing were carried out to map the disease locus and identify the p.G178R mutation in the asparaginase like-1 gene (ASRGL1), segregating with the retinal dystrophy phenotype in the study pedigree. ASRGL1 encodes an enzyme that catalyzes the hydrolysis of L-asparagine and isoaspartyl-peptides. Studies on the ASRGL1 expressed in Escherichia coli and transiently transfected mammalian cells indicated that the p.G178R mutation impairs the autocatalytic processing of this enzyme resulting in the loss of functional ASRGL1 and leaving the inactive precursor protein as a destabilized and aggregation-prone protein. A zebrafish model overexpressing the mutant hASRGL1 developed retinal abnormalities and loss of cone photoreceptors. Our studies suggest that the p.G178R mutation in ASRGL1 leads to photoreceptor degeneration resulting in progressive vision loss.
AB - Inherited retinal dystrophies are a group of genetically heterogeneous conditions with broad phenotypic heterogeneity. We analyzed a large five-generation pedigree with early-onset recessive retinal degeneration to identify the causative mutation. Linkage analysis and homozygosity mapping combined with exome sequencing were carried out to map the disease locus and identify the p.G178R mutation in the asparaginase like-1 gene (ASRGL1), segregating with the retinal dystrophy phenotype in the study pedigree. ASRGL1 encodes an enzyme that catalyzes the hydrolysis of L-asparagine and isoaspartyl-peptides. Studies on the ASRGL1 expressed in Escherichia coli and transiently transfected mammalian cells indicated that the p.G178R mutation impairs the autocatalytic processing of this enzyme resulting in the loss of functional ASRGL1 and leaving the inactive precursor protein as a destabilized and aggregation-prone protein. A zebrafish model overexpressing the mutant hASRGL1 developed retinal abnormalities and loss of cone photoreceptors. Our studies suggest that the p.G178R mutation in ASRGL1 leads to photoreceptor degeneration resulting in progressive vision loss.
UR - http://www.scopus.com/inward/record.url?scp=84988351690&partnerID=8YFLogxK
M3 - مقالة
C2 - 27106100
SN - 0964-6906
VL - 25
SP - 2483
EP - 2497
JO - Human Molecular Genetics
JF - Human Molecular Genetics
IS - 12
ER -