Calcium signaling in Parkinson’s disease

被引:0
作者
Tito Calì
Denis Ottolini
Marisa Brini
机构
[1] University of Padova,Department of Biology
来源
Cell and Tissue Research | 2014年 / 357卷
关键词
Calcium; Dopaminergic neurons; Mitochondria; Parkinson’s disease (PD); PD-related proteins;
D O I
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学科分类号
摘要
Calcium (Ca2+) is an almost universal second messenger that regulates important activities of all eukaryotic cells. It is of critical importance to neurons, which have developed extensive and intricate pathways to couple the Ca2+ signal to their biochemical machinery. In particular, Ca2+ participates in the transmission of the depolarizing signal and contributes to synaptic activity. During aging and in neurodegenerative disease processes, the ability of neurons to maintain an adequate energy level can be compromised, thus impacting on Ca2+ homeostasis. In Parkinson’s disease (PD), many signs of neurodegeneration result from compromised mitochondrial function attributable to specific effects of toxins on the mitochondrial respiratory chain and/or to genetic mutations. Despite these effects being present in almost all cell types, a distinguishing feature of PD is the extreme selectivity of cell loss, which is restricted to the dopaminergic neurons in the ventral portion of the substantia nigra pars compacta. Many hypotheses have been proposed to explain such selectivity, but only recently it has been convincingly shown that the innate autonomous activity of these neurons, which is sustained by their specific Cav1.3 L-type channel pore-forming subunit, is responsible for the generation of basal metabolic stress that, under physiological conditions, is compensated by mitochondrial buffering. However, when mitochondria function becomes even partially compromised (because of aging, exposure to environmental factors or genetic mutations), the metabolic stress overwhelms the protective mechanisms, and the process of neurodegeneration is engaged. The characteristics of Ca2+ handling in neurons of the substantia nigra pars compacta and the possible involvement of PD-related proteins in the control of Ca2+ homeostasis will be discussed in this review.
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页码:439 / 454
页数:15
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  • [1] Abramov AY(2011)Bioenergetic consequences of PINK1 mutations in Parkinson disease PLoS One 6 e25622-1886
  • [2] Gegg M(2006)Alpha-synuclein potentiates Ca Neuroreport 17 1883-14812
  • [3] Grunewald A(2011) influx through voltage-dependent Ca PLoS One 6 e16038-42
  • [4] Wood NW(2007) channels Proc Natl Acad Sci U S A 104 14807-233
  • [5] Klein C(2013)Increased mitochondrial calcium sensitivity and abnormal expression of innate immunity genes precede dopaminergic defects in pink1-deficient mice Cell Death Differ 20 31-541
  • [6] Schapira AH(2010)DJ-1 gene deletion reveals that DJ-1 is an atypical peroxiredoxin-like peroxidase Annu Rev Cell Dev Biol 26 211-310
  • [7] Adamczyk A(2009)The pathways of mitophagy for quality control and clearance of mitochondria J Comp Neurol 513 532-345
  • [8] Strosznajder JB(2003)Alpha-synuclein: membrane interactions and toxicity in Parkinson's disease Neuroepidemiology 22 305-377
  • [9] Akundi RS(2011)Equal numbers of neuronal and nonneuronal cells make the human brain an isometrically scaled-up primate brain Nature 476 341-465
  • [10] Huang Z(2013)Association between Parkinson's disease and exposure to pesticides in southwestern France Cell Rep 5 367-217