Abstract

The progressive loss of motor control due to reduction of dopamine-producing neurons in the substantia nigra pars compacta and decreased striatal dopamine levels are the classically described features of Parkinson disease (PD). Neuronal damage also progresses to other regions of the brain, and additional non-motor dysfunctions are common. Accumulation of environmental toxins, such as pesticides and metals, are suggested risk factors for the development of typical late onset PD, although genetic factors seem to be substantial in early onset cases. Mutations of DJ-1 are known to cause a form of recessive early onset Parkinson disease, highlighting an important functional role for DJ-1 in early disease prevention. This study identifies human DJ-1 as a metal-binding protein able to evidently bind copper as well as toxic mercury ions in vitro. The study further characterizes the cytoprotective function of DJ-1 and PD-mutated variants of DJ-1 with respect to induced metal cytotoxicity. The results show that expression of DJ-1 enhances the cells' protective mechanisms against induced metal toxicity and that this protection is lost for DJ-1 PD mutations A104T and D149A. The study also shows that oxidation site-mutated DJ-1 C106A retains its ability to protect cells. We also show that concomitant addition of dopamine exposure sensitizes cells to metal-induced cytotoxicity. We also confirm that redox-active dopamine adducts enhance metal-catalyzed oxidation of intracellular proteins in vivo by use of live cell imaging of redox-sensitive S3roGFP. The study indicates that even a small genetic alteration can sensitize cells to metal-induced cell death, a finding that may revive the interest in exogenous factors in the etiology of PD.

Highlights

  • DJ-1 is associated with recessive early onset Parkinson disease

  • The results show that expression of DJ-1 enhances the cells’ protective mechanisms against induced metal toxicity and that this protection is lost for DJ-1 Parkinson disease (PD) mutations A104T and D149A

  • We show that expression of DJ-1 protects the cells against mercuryand copper-induced cytotoxicity and that PD-mutated DJ-1 A104T and D149A have lost this function

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Summary

Background

DJ-1 is associated with recessive early onset Parkinson disease. Results: DJ-1 acts as a metal-binding protein, binding copper and mercury, and DJ-1, but not mutated clinical variants, protects cells against metal-induced cytotoxicity. Conclusion: Small genetic alterations in a central Parkinson disease protein can sensitize cells to metal-induced cell death. The study indicates that even a small genetic alteration can sensitize cells to metal-induced cell death, a finding that may revive the interest in exogenous factors in the etiology of PD. We showed that DJ-1 interacts with Cu,Zn-superoxide dismutase 1 and that this interaction can be enhanced by titration of copper ions, a known ligand for the superoxide dismutase 1 enzyme [42] Considering this and the fact that increased metal exposure or deficient metal regulation as well as mutations of DJ-1 are underlying factors for PD development, we sought to find out whether DJ-1 itself could be influenced by directly interacting with metals. We characterized the effects of metal-induced cytotoxicity, in relation to DJ-1, by utilizing a cell model system deficient of DJ-1 or with wild type (WT) or PD mutated variants of human DJ-1 protein expression

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