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MGMT, a risk factor for both genetic and environmental forms of dementia
Glen E Kisby1, Heaton Oakes1, David Beckett1
1Department of Neurology, School of Medicine, College of Osteopathic Medicine of the Pacific-Northwest, Lebanon, Oregon, USA.
Abstract:
MGMT, the gene coding for the DNA-repair protein O6 -methylguanine methyltransferase, which has been recently shown to be a risk factor for inherited forms of Alzheimer's disease (AD), notably among women, might also be linked to Western Pacific amyotrophic lateral sclerosis and Parkinsonism-dementia complex (ALS/PDC), one phenotype of which is an AD-like dementia. Guam ALS/PDC is strongly considered to be an environmental disorder caused by oral exposure to natural toxins (i.e., genotoxic/epigenotoxic chemicals), notably methylazoxymethanol (MAM) that alkylates guanine to form O6 -methylguanine, found in the seed of cycad plants traditionally used for food. Thus, the DNA-repair protein MGMT might participate in both AD and in the AD-related disorder ALS/PDC.
Insights
The DNA-repair gene MGMT, linked to Alzheimer's disease risk, may also play a role in Western Pacific ALS/PDC. This suggests MGMT
Area of Science:
- Neuroscience
- Genetics
- Environmental Health
Background:
- The DNA-repair gene MGMT (O6-methylguanine methyltransferase) is implicated in inherited Alzheimer's disease (AD), particularly in women.
- Western Pacific amyotrophic lateral sclerosis and Parkinsonism-dementia complex (ALS/PDC) presents with AD-like dementia and is suspected to be environmentally induced.
- Cycad plant toxins, such as methylazoxymethanol (MAM), are hypothesized to cause ALS/PDC through guanine alkylation, forming O6-methylguanine.
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