| Literature DB >> 22294875 |
Sukhbir Dhillon1, Jessica A Hellings, Merlin G Butler.
Abstract
We review the current status of the role and function of the mitochondrial DNA (mtDNA) in the etiology of autism spectrum disorders (ASD) and the interaction of nuclear and mitochondrial genes. High lactate levels reported in about one in five children with ASD may indicate involvement of the mitochondria in energy metabolism and brain development. Mitochondrial disturbances include depletion, decreased quantity or mutations of mtDNA producing defects in biochemical reactions within the mitochondria. A subset of individuals with ASD manifests copy number variation or small DNA deletions/duplications, but fewer than 20 percent are diagnosed with a single gene condition such as fragile X syndrome. The remaining individuals with ASD have chromosomal abnormalities (e.g., 15q11-q13 duplications), other genetic or multigenic causes or epigenetic defects. Next generation DNA sequencing techniques will enable better characterization of genetic and molecular anomalies in ASD, including defects in the mitochondrial genome particularly in younger children.Entities:
Keywords: Autism spectrum disorders (ASD); genetic causation.; lactate/pyruvate ratios; mitochondrial DNA (mtDNA) mutations and depletion; nuclear genes; oxidative stress
Year: 2011 PMID: 22294875 PMCID: PMC3145262 DOI: 10.2174/138920211796429745
Source DB: PubMed Journal: Curr Genomics ISSN: 1389-2029 Impact factor: 2.236
Reports of Autism Spectrum Disorders (ASD) Involving Mitochondrial and Nuclear Gene Defects
| References | Number of Subjects with ASD | Sample | MitochondrialComplex Defects | MitochondrialGene Defects | Nuclear Gene Defects | Other |
|---|---|---|---|---|---|---|
| Laszlo | 30 | Blood | Chromosome 18q deletion(1 of 30 subjects) | LA ↑ (13 of 30 subjects);Pyruvate ↑ (9 of 30 subjects) | ||
| Graf | 1 | Blood, Muscle | I, IV | tRNALys(G8363A) | ||
| Fillano | 12 | Muscle | I, III, IV, V (7 of 8 subjects) | mtDNA deletion (5 of 12 subjects);mtDNA defect (3 of 12 subjects) | ||
| Filipek | 2 | Muscle | III | Chromosome 15q11-q13 duplication(2 of 2 subjects) | Carnitine ↓(2 of 2 subjects);Plasma alanine ↑ (1 of 2 subjects);Lactate ↑ (1 of 2 subjects);CPK ↑ (1 of 2 subjects) | |
| Pons | 5 | Muscle | I, II, III, IV | tRNALeu (A3243G)(2 of 5 subjects) | Plasma lactate ↑ (2 of 3 subjects);CSF lactate ↑ (1 of 1 subject) | |
| Ramoz | 411 | Blood | SNP (rs2056202 and rs2292813)in | |||
| Oliveira | 69 | Muscle | I, IV, V | No mutations seen | Plasma lactate ↑ (14 of 69 subjects) | |
| Segurado | 174 | Blood,Buccal cells | SNP (rs2056202 and rs2292813)in | |||
| Correia | 210 | Muscle | Multiple complex defects | Normal | LA ↑ (36 of 210 subjects) | |
| Tsao & Mendell, 2007 | 2 | Muscle | II, III, IV | SNP (rs2056202 ) in | CoQ10 ↑ deficiency (1 of 2 subjects) | |
| Weissman | 25 | Blood, Muscle | I (16 of 23 subjects),II (2 of 23 subjects), III (5 of 23 subjects),IV (1 of 23 subjects) | mtDNA deletion(7 of 25 subjects) | Plasma lactate ↑ (19 of 25 subjects); Plasma pyruvate ↑ (9 of 17 subjects); Plasma CPK ↑ (8 of 25 subjects) | |
| Silverman | 355 | Blood | SNP (rs2056202 and rs2292813)in | |||
| Shoffner | 28 | Muscle, BloodCSF, Urine | I (14 of 28 subjects);I+III (5 of 28 subjects); V (4 of 28 subjects);I+III+IV (20 of 28 subjects) | mtDNA deletion(1 of 20 subjects) | Plasma lactate ↑;CoQ10 deficiency (1 of 14 subjects) | |
| Giulivi | 10 | Blood | Decreased NADH oxidase (8 of 10 subjects);I (6 of 10 subjects);IV (3 of 10 subjects);V (4 of 10 subjects) | mtDNA over-replication (5 of 10 subjects);Cytochrome b1 gene deletion (2 of 10 subjects) | Succinase oxidase (6 of 10 subjects);Pyruvate dehyrogenase (8 of 10 subjects) | |
| Ezugha | 1 | I, IV | 1Mb deletion in chromosome 5q14.3 |
CPK = creatine phosphokinase; LA = lactic acidosis; CSF = cerebral spinal fluid.