Oxidative Stress and Huntington's Disease: The Good, The Bad, and The Ugly.

Amit Kumar, Rajiv R Ratan

Journal: Journal of Huntington's disease 2017;5(3):217-237

PMID: 27662334

Abstract

Redox homeostasis is crucial for proper cellular functions, including receptor tyrosine kinase signaling, protein folding, and xenobiotic detoxification. Under basal conditions, there is a balance between oxidants and antioxidants. This balance facilitates the ability of oxidants, such as reactive oxygen species, to play critical regulatory functions through a direct modification of a small number of amino acids (e.g. cysteine) on signaling proteins. These signaling functions leverage tight spatial, amplitude, and temporal control of oxidant concentrations. However, when oxidants overwhelm the antioxidant capacity, they lead to a harmful condition of oxidative stress. Oxidative stress has long been held to be one of the key players in disease progression for Huntington's disease (HD). In this review, we will critically review this evidence, drawing some intermediate conclusions, and ultimately provide a framework for thinking about the role of oxidative stress in the pathophysiology of HD.

Address: Burke Medical Research Institute, White Plains, NY, USA.; Brain and Mind Research Institute, Weill Medical College of Cornell University, New York, NY, USA.; Department of Neurology, Weill Medical College of Cornell University, New York, NY, USA.
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