DAGLAdiacylglycerol lipase alpha
Autism Reports / Total Reports
3 / 7Rare Variants / Common Variants
29 / 0Aliases
DAGLA, C11orf11, DAGL(ALPHA), DAGLALPHA, NSDDRAssociated Syndromes
-Chromosome Band
11q12.2Associated Disorders
-Relevance to Autism
A paternally-inherited deletion disrupting seven exons of the DAGLA gene was identified in a male ASD proband and an affected male sibling; however, this deletion was also observed in an unaffected male sibling but was not observed in controls (Prasad et al., 2012).
Molecular Function
This gene encodes a diacylglycerol lipase. The encoded enzyme is involved in the biosynthesis of the endocannabinoid 2-arachidonoyl-glycerol.
External Links
SFARI Genomic Platforms
Reports related to DAGLA (7 Reports)
# | Type | Title | Author, Year | Autism Report | Associated Disorders |
---|---|---|---|---|---|
1 | Primary | A discovery resource of rare copy number variations in individuals with autism spectrum disorder | Prasad A , et al. (2013) | Yes | - |
2 | Support | Transcriptome analysis of cortical tissue reveals shared sets of downregulated genes in autism and schizophrenia | Ellis SE , et al. (2016) | Yes | - |
3 | Support | Rare genetic variants in the endocannabinoid system genes CNR1 and DAGLA are associated with neurological phenotypes in humans | Smith DR , et al. (2017) | No | - |
4 | Support | Role of Striatal Direct Pathway 2-Arachidonoylglycerol Signaling in Sociability and Repetitive Behavior | Shonesy BC , et al. (2018) | No | - |
5 | Support | Mutations in ASH1L confer susceptibility to Tourette syndrome | Liu S , et al. (2019) | No | - |
6 | Support | - | Singh T et al. (2022) | No | - |
7 | Support | - | Zhou X et al. (2022) | Yes | - |
Rare Variants (29)
Status | Allele Change | Residue Change | Variant Type | Inheritance Pattern | Parental Transmission | Family Type | PubMed ID | Author, Year |
---|---|---|---|---|---|---|---|---|
c.1613G>A | p.Arg538His | missense_variant | De novo | - | - | 35982159 | Zhou X et al. (2022) | |
c.1741C>T | p.Arg581Trp | missense_variant | De novo | - | - | 35982159 | Zhou X et al. (2022) | |
c.263C>T | p.Thr88Met | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
- | - | copy_number_loss | Familial | Paternal | Multiplex | 23275889 | Prasad A , et al. (2013) | |
c.589C>T | p.Arg197Trp | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.757G>T | p.Ala253Ser | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.940G>A | p.Ala314Thr | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.992C>T | p.Ala331Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.1213-3A>G | - | splice_region_variant | De novo | - | Simplex | 35982159 | Zhou X et al. (2022) | |
c.1105G>A | p.Val369Ile | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.1375C>T | p.Arg459Cys | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.1742G>A | p.Arg581Gln | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2243C>T | p.Ala748Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2294G>A | p.Arg765Gln | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2300C>T | p.Ala767Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2377G>A | p.Asp793Asn | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2430C>A | p.His810Gln | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2444G>A | p.Arg815His | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2525C>T | p.Ala842Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2573C>T | p.Ala858Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2621C>T | p.Ala874Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2653G>C | p.Gly885Arg | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2675G>T | p.Arg892Leu | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2909C>A | p.Pro970His | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.2962C>G | p.Leu988Val | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.3049G>C | p.Asp1017His | missense_variant | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.3127T>C | p.Ter1043GlnextTer29 | stop_lost | Unknown | - | - | 29145497 | Smith DR , et al. (2017) | |
c.932G>A | p.Arg311Gln | missense_variant | De novo | - | Simplex | 31673123 | Liu S , et al. (2019) | |
c.2443C>T | p.Arg815Cys | missense_variant | De novo | - | Simplex | 35982159 | Zhou X et al. (2022) |
Common Variants
No common variants reported.
SFARI Gene score
Strong Candidate


A paternally-inherited deletion disrupting seven exons of the DAGLA gene was identified in a male ASD proband and an affected male sibling, as well as in an unaffected male sibling; this variant was not observed in controls (Prasad et al., 2012). This gene was shown to be differentially expressed (P < 0.05) in both schizophrenia (Z -2.98) and autism (Z -4.22) post-mortem brain samples in Ellis et al., 2016. Screening for rare genetic variants in core endocannabinoid system genes in 6,032 patients with a broad spectrum of neurological disorders determined that heterozygous rare coding variants in DAGLA were significantly associated with seizures and neurodevelopmental disorders, including autism, compared to controls (Smith et al., 2017).
Score Delta: Score remained at 2
criteria met
See SFARI Gene'scoring criteriaWe considered a rigorous statistical comparison between cases and controls, yielding genome-wide statistical significance, with independent replication, to be the strongest possible evidence for a gene. These criteria were relaxed slightly for category 2.
4/1/2022

Decreased from 3 to 2
Description
A paternally-inherited deletion disrupting seven exons of the DAGLA gene was identified in a male ASD proband and an affected male sibling, as well as in an unaffected male sibling; this variant was not observed in controls (Prasad et al., 2012). This gene was shown to be differentially expressed (P < 0.05) in both schizophrenia (Z -2.98) and autism (Z -4.22) post-mortem brain samples in Ellis et al., 2016. Screening for rare genetic variants in core endocannabinoid system genes in 6,032 patients with a broad spectrum of neurological disorders determined that heterozygous rare coding variants in DAGLA were significantly associated with seizures and neurodevelopmental disorders, including autism, compared to controls (Smith et al., 2017).
10/1/2019

Decreased from 4 to 3
New Scoring Scheme
Description
A paternally-inherited deletion disrupting seven exons of the DAGLA gene was identified in a male ASD proband and an affected male sibling, as well as in an unaffected male sibling; this variant was not observed in controls (Prasad et al., 2012). This gene was shown to be differentially expressed (P < 0.05) in both schizophrenia (Z -2.98) and autism (Z -4.22) post-mortem brain samples in Ellis et al., 2016. Screening for rare genetic variants in core endocannabinoid system genes in 6,032 patients with a broad spectrum of neurological disorders determined that heterozygous rare coding variants in DAGLA were significantly associated with seizures and neurodevelopmental disorders, including autism, compared to controls (Smith et al., 2017).
10/1/2017

Increased from to 4
Description
A paternally-inherited deletion disrupting seven exons of the DAGLA gene was identified in a male ASD proband and an affected male sibling, as well as in an unaffected male sibling; this variant was not observed in controls (Prasad et al., 2012). This gene was shown to be differentially expressed (P < 0.05) in both schizophrenia (Z -2.98) and autism (Z -4.22) post-mortem brain samples in Ellis et al., 2016. Screening for rare genetic variants in core endocannabinoid system genes in 6,032 patients with a broad spectrum of neurological disorders determined that heterozygous rare coding variants in DAGLA were significantly associated with seizures and neurodevelopmental disorders, including autism, compared to controls (Smith et al., 2017).
Krishnan Probability Score
Score 0.49220967727967
Ranking 4670/25841 scored genes
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ExAC Score
Score 0.95314834249245
Ranking 2628/18225 scored genes
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Sanders TADA Score
Score 0.94621404347514
Ranking 16780/18665 scored genes
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Zhang D Score
Score 0.27088373981584
Ranking 3176/20870 scored genes
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