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result(s) for
"Canavan Disease - genetics"
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Deep mutational scanning reveals a correlation between degradation and toxicity of thousands of aspartoacylase variants
2024
Unstable proteins are prone to form non-native interactions with other proteins and thereby may become toxic. To mitigate this, destabilized proteins are targeted by the protein quality control network. Here we present systematic studies of the cytosolic aspartoacylase, ASPA, where variants are linked to Canavan disease, a lethal neurological disorder. We determine the abundance of 6152 of the 6260 ( ~ 98%) possible single amino acid substitutions and nonsense ASPA variants in human cells. Most low abundance variants are degraded through the ubiquitin-proteasome pathway and become toxic upon prolonged expression. The data correlates with predicted changes in thermodynamic stability, evolutionary conservation, and separate disease-linked variants from benign variants. Mapping of degradation signals (degrons) shows that these are often buried and the C-terminal region functions as a degron. The data can be used to interpret Canavan disease variants and provide insight into the relationship between protein stability, degradation and cell fitness.
The details of how the protein folding and degradation systems collaborate to combat potentially toxic non-native proteins are unknown. Here the authors perform systematic studies of missense and nonsense variants of the cytosolic aspartoacylase, ASPA, where loss-of-function variants are linked to Canavan disease.
Journal Article
Prevalence and carrier frequency of Canavan disease in a South Indian community with implications for research and public health
2026
Canavan disease (CD) is a progressive leukodystrophy characterized by the spongy degeneration of white matter in the brain. Only three reports from India have been elucidated the
ASPA gene
mutation in patients diagnosed with CD. At our center, two genetically confirmed cases of juvenile Canavan disease have been identified. Both patients possess a novel genetic variant in the
ASPA
gene, c.526G > A (p. Gly176Ser), which has been classified as pathogenic. A preliminary study conducted at our centre suggested the presence of a founder effect within this population. Hence, the current study aimed to analyse the cross-sectional prevalence and carrier frequency of the disease and confirm the founder effect. Five hundred seventy-five blood samples were collected from individuals in this community after obtaining informed, written consent. The
ASPA
gene, specifically exon 3, was analysed utilizing an in-house developed, cost-effective allele-specific PCR approach in all samples. Three short tandem repeat (STR) markers—D17S1828, D17S919, and D17S1298—were employed to examine the founder effect of the mutation by fragment analysis. The carrier frequency in our study population was found to be 1 in 23, higher than that reported in the Jewish population. The allele-specific PCR technique proved to be sensitive and cost-effective for mass screening. All identified carriers displayed specific variations in the 23 heterozygous allelic repeats. At the same time, the affected individuals manifested homozygous alleles for the D17S1828 marker, confirming that this variant is indigenous to the population under study. The D17S919 marker (18/19 repeats) was absent in the control cohort but present in the community under investigation, further substantiating the founder effect. Furthermore, the study identified other potential genetic disorders in this community that warrant further investigation. This study underscores the critical importance of carrier screening in communities characterized by high consanguinity to mitigate the prevalence of recessive disorders in future generations. The elevated carrier frequency observed in this community relative to that in Ashkenazi Jews points to a potential underestimation of prevalence, this might be due to the limited number of community-based studies conducted on rare diseases.
Journal Article
The natural history of Canavan disease: 23 new cases and comparison with patients from literature
by
Kohlschütter, Alfried
,
Guder, Philipp
,
Eichler, Florian S.
in
Amidohydrolases - genetics
,
Aspartoacylase deficiency
,
Canavan disease
2021
Background
Canavan disease (CD, MIM # 271900) is a rare and devastating leukodystrophy of early childhood. To identify clinical features that could serve as endpoints for treatment trials, the clinical course of CD was studied retrospectively and prospectively in 23 CD patients. Results were compared with data of CD patients reported in three prior large series. Kaplan Meier survival analysis including log rank test was performed for pooled data of 82 CD patients (study cohort and literature patients).
Results
Onset of symptoms was between 0 and 6 months. Psychomotor development of patients was limited to abilities that are usually gained within the first year of life. Macrocephaly became apparent between 4 and 18 months of age. Seizure frequency was highest towards the end of the first decade. Ethnic background was more diverse than in studies previously reported. A CD severity score with assessment of 11 symptoms and abilities was developed.
Conclusions
Early hallmarks of CD are severe psychomotor disability and macrocephaly that develop within the first 18 months of life. While rare in the first year of life, seizures increase in frequency over time in most patients. CD occurs more frequently outside Ashkenazi Jewish communities than previously reported. Concordance of phenotypes between siblings but not patients with identical
ASPA
mutations suggest the influence of yet unknown modifiers. A CD severity score may allow for assessment of CD disease severity both retrospectively and prospectively.
Journal Article
NGS-based expanded carrier screening for genetic disorders in North Indian population reveals unexpected results – a pilot study
by
Bijarnia-Mahay, Sunita
,
Ramprasad, V. L.
,
Kulshreshtha, Samarth
in
Acyl-CoA Dehydrogenase - deficiency
,
Acyl-CoA Dehydrogenase - genetics
,
Adult
2020
Background
To determine the carrier frequency and pathogenic variants of common genetic disorders in the north Indian population by using next generation sequencing (NGS).
Methods
After pre-test counselling, 200 unrelated individuals (including 88 couples) were screened for pathogenic variants in 88 genes by NGS technology. The variants were classified as per American College of Medical Genetics criteria. Pathogenic and likely pathogenic variants were subjected to thorough literature-based curation in addition to the regular filters. Variants of unknown significance were not reported. Individuals were counselled explaining the implications of the results, and cascade screening was advised when necessary.
Results
Of the 200 participants, 52 (26%) were found to be carrier of one or more disorders. Twelve individuals were identified to be carriers for congenital deafness, giving a carrier frequency of one in 17 for one of the four genes tested (
SLC26A4, GJB2, TMPRSS3
and
TMC1
in decreasing order). Nine individuals were observed to be carriers for cystic fibrosis, with a frequency of one in 22. Three individuals were detected to be carriers for Pompe disease (frequency one in 67). None of the 88 couples screened were found to be carriers for the same disorder. The pathogenic variants observed in many disorders (such as deafness, cystic fibrosis, Pompe disease, Canavan disease, primary hyperoxaluria, junctional epidermolysis bullosa, galactosemia, medium chain acyl CoA deficiency etc.) were different from those commonly observed in the West.
Conclusion
A higher carrier frequency for genetic deafness, cystic fibrosis and Pompe disease was unexpected, and contrary to the generally held view about their prevalence in Asian Indians. In spite of the small sample size, this study would suggest that population-based carrier screening panels for India would differ from those in the West, and need to be selected with due care. Testing should comprise the study of all the coding exons with its boundaries in the genes through NGS, as all the variants are not well characterized. Only study of entire coding regions in the genes will detect carriers with adequate efficiency, in order to reduce the burden of genetic disorders in India and other resource poor countries.
Journal Article
Clustering of Juvenile Canavan disease in an Indian community due to population bottleneck and isolation: genomic signatures of a founder event
by
Kotambail, Ananthapadmanabha
,
Ghati, Chetan
,
Arunachal, Gautham
in
Ataxia
,
Birth weight
,
Canavan disease
2023
Mild/juvenile Canavan disease (M/JCD) is less frequently reported in the literature and little is known about its pathogenetic mechanisms. We report a comprehensive investigation into the pathogenetic mechanism of a novel NM_000049.4(ASPA):c.526G>A variant in two families. The families belong to Telugu Devanga Chettiar community (TDC) from southern India. TDC has a complex history of migration from their historical origin centuries ago with high endogamy. TDC probably has the highest clustering M/JCD recorded historically (around 24 cases). The pathogenic variant was shown to cause non-classical splicing defect resulting in two different transcripts. The splicing aberration, a loss of function mechanism coupled with a milder missense effect can explain the milder phenotype compared to the infantile-onset CD. The high clustering of an extremely rare form of neurodegenerative disorder with reduced fitness, led us to speculate the possibility of a founder event. Genotyping array of TDC and multiple distinct populations of Indian origin for several population genetic parameters was performed. It yielded robust signatures of a founder event in TDC, such as a high fixation index, increased runs of homozygosity and identity-by-descent in the absence of consanguinity; a large haplotype with high linkage disequilibrium among markers comprising the pathogenic variant; a robust population structure; mutation dating, estimating the age of the potential founder of TDC at around 375 years; possibly a high carrier rate in TDC. This study has not only focused its attention on natural history and pathogenetics but also paves way for carrier screening programs in TDC and future therapeutic studies.
Journal Article
rAAV Gene Therapy in a Canavan's Disease Mouse Model Reveals Immune Impairments and an Extended Pathology Beyond the Central Nervous System
2016
Aspartoacylase (AspA) gene mutations cause the pediatric lethal neurodegenerative Canavan disease (CD). There is emerging promise of successful gene therapy for CD using recombinant adeno-associated viruses (rAAVs). Here, we report an intracerebroventricularly delivered AspA gene therapy regime using three serotypes of rAAVs at a 20-fold reduced dose than previously described in AspA−/− mice, a bona-fide mouse model of CD. Interestingly, central nervous system (CNS)-restricted therapy prolonged survival over systemic therapy in CD mice but failed to sustain motor functions seen in systemically treated mice. Importantly, we reveal through histological and functional examination of untreated CD mice that AspA deficiency in peripheral tissues causes morphological and functional abnormalities in this heretofore CNS-defined disorder. We demonstrate for the first time that AspA deficiency, possibly through excessive N-acetyl aspartic acid accumulation, elicits both a peripheral and CNS immune response in CD mice. Our data establish a role for peripheral tissues in CD pathology and serve to aid the development of more efficacious and sustained gene therapy for this disease.
Journal Article
Immune responses to AAV in a phase I study for Canavan disease
by
Li, C.
,
Feely, M.
,
Freese, A.
in
Adeno-associated virus
,
Amidohydrolases - deficiency
,
Amidohydrolases - genetics
2006
Background Canavan disease is a rare leukodystrophy with no current treatment. rAAV‐ASPA has been developed for gene delivery to the central nervous system (CNS) for Canavan disease. This study represents the first use of a viral vector in an attempt to ameliorate a neurodegenerative disorder. Methods Subjects received intracranial infusions via six cranial burr holes. Adeno‐associated virus, serotype 2 (AAV2), mediated intraparenchymal delivery of the human aspartoacylase cDNA at a maximum dose of 1 × 1012 vector genomes per subject. The immune response and safety profiles were monitored in the follow‐up of ten subjects. Results Following rAAV2 administration, we found no evidence of AAV2 neutralizing antibody titers in serum for the majority of subjects tested (7/10). In a subset (3/10) of subjects, low to moderately high levels of AAV2 neutralizing antibody with respect to baseline were detected. In all subjects, there were minimal systemic signs of inflammation or immune stimulation. In subjects with catheter access to the brain lateral ventricle, cerebrospinal fluid was examined and there was a complete absence of neutralizing antibody titers with no overt signs of brain inflammation. Conclusions rAAV2 vector administration to the human CNS appears well tolerated. The low levels of immune response to AAV2 detected in 3/10 subjects in this study suggest at this dose and with intraparenchymal administration this approach is relatively safe. Long‐term monitoring of subjects and expansion to phase II/III will be necessary in order to make definitive statements on safety and efficacy. Copyright © 2006 John Wiley & Sons, Ltd.
Journal Article
Two patients with Canavan disease and structural modeling of a novel mutation
by
Nofal, Mariam Y.
,
Zaki, Osama K
,
Ahmed, Khalid A
in
Biochemistry
,
Biomedical and Life Sciences
,
Biomedicine
2017
Canavan disease (CD) is a rare fatal childhood neurological autosomal recessive genetic disease caused by mutations in the
ASPA
gene, which lead to catalytic deficiency of the ASPA enzyme, which catalyzes the hydrolysis of
N
-acetyl-L-aspartate (NAA) into aspartate and acetate. CD occurs frequently among Ashkenazi Jewish population, however it has been reported in many other ethnic groups with significantly lower frequency. Here, we report on two Egyptian patients diagnosed with CD, the first patient harbors five missense mutations (c.427 A > G; p. I143V, c.502C > T; p. R168C, c.530 T > C; p. I177T, c.557 T > C; p. V186D c.548C > T; p. P183L) and a silent mutation (c.693 C > T; p. Y231Y). The second patient was found to be homozygous for two missense mutations (c.427 A > G; p. I143V and c.557 T > A; p. V186D). Furthermore, molecular modeling of the novel mutation p. P183L provides an instructive explanation of the mutational impact on the protein structure that can affect the function of the ASPA. Here, the clinical, radiological, and biochemical profile of the two patients are reviewed in details.
Journal Article
Comparative computational assessment of the pathogenicity of mutations in the Aspartoacylase enzyme
by
Zayed, Hatem
,
George Priya Doss, C.
in
Acetic acid
,
Amidohydrolases - genetics
,
Amidohydrolases - metabolism
2017
Aspartoacylase (ASPA) is a zinc-dependent abundant enzyme in the brain, which catalyzes the conversion of N-acetyl aspartate (NAA) into acetate and aspartate. Mutations in the
ASPA
gene are associated with the development of Canavan disease (CD), leading to the deficiency of ASPA activity. Patients with CD were characterized by degeneration of the white matter of the brain. We reported earlier on two patients with severe form of CD that both had two novel missense mutations in the ASPA: c.427 A > G; p. I143V and c.557 T > A; p. V186D (Zaki et al.
2017a
), patient 1 harbored both mutations (p.I143V and p.V186D) in a heterozygous form together with four other mutations, and patient 2 had both mutations in homozygous form. Wijayasinghe et al. (
2014
) crystallized the 3D structures of four different ASPA mutants (p.K213E, p.Y231C, p.E285A, and p.F295S). In this study, we used in silico prediction methods and molecular dynamics simulation (MDS) to understand the structural impact of all these mutations. Moreover, we used molecular docking (MD) to investigate the binding patterns of the NAA substrate to the native and mutant proteins. Among the mutations, p.E285A (crystallized mutant) was predicted to be the most deleterious for the protein function and the least deleteriousness mutant was the p.I143V (novel mutant). Among the novel mutations, p.V186D was observed to be disruptive for both the zinc binding and NAA binding than the p.I143V. This study provides practical insights on the effect of these mutations on the ASPA function and might serve as a platform for drug design for CD treatment.
Journal Article