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  • The impact of pathogenic mitochondrial DNA mutations on substantia nigra neurons.

The impact of pathogenic mitochondrial DNA mutations on substantia nigra neurons.

The Journal of neuroscience : the official journal of the Society for Neuroscience (2013-06-28)
Amy Reeve, Martin Meagher, Nichola Lax, Eve Simcox, Philippa Hepplewhite, Evelyn Jaros, Doug Turnbull
ABSTRACT

Mitochondrial defects within substantia nigra (SN) neurons are implicated in the pathogenesis of Parkinson's disease. SN neurons show increased mitochondrial defects, mitochondrial DNA deletion levels, and susceptibility to such dysfunction, although the role of mitochondria in neuronal degeneration remains uncertain. In this study, we addressed this important question by exploring changes within the mitochondria of SN neurons from patients with primary mitochondrial diseases to determine whether mitochondrial dysfunction leads directly to neuronal cell loss. We counted the pigmented neurons and quantified mitochondrial respiratory activity, deficiencies in mitochondrial proteins, and the percentage of pathogenic mutations in single neurons. We found evidence of defects of both complex I and complex IV of the respiratory chain in all patients. We found that marked neuronal cell loss was only observed in a few patients with mitochondrial disease and that all these patients had mutations in polymerase gamma (POLG), which leads to the formation of multiple mitochondrial DNA deletions over time, similar to aging and Parkinson's disease. Interestingly, we detected α-synuclein pathology in two mitochondrial patients with POLG mutations. Our observations highlight the complex relationship between mitochondrial dysfunction and the susceptibility of SN neurons to degeneration and α-synuclein pathology. Our finding that the loss of SN neurons was only severe in patients with POLG mutations suggests that acquired mitochondrial defects may be less well tolerated by SN neurons than by inherited ones.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Taq DNA Polymerase from Thermus aquaticus, with 10× PCR reaction buffer containing MgCl2
Sigma-Aldrich
Taq DNA Polymerase from Thermus aquaticus, with 10× PCR reaction buffer without MgCl2
Sigma-Aldrich
DNA Polymerase I, Klenow Fragment from Escherichia coli, buffered aqueous glycerol solution
Sigma-Aldrich
DNA Polymerase I from Escherichia coli lysogenic for NM 964, buffered aqueous glycerol solution