| Literature DB >> 22291891 |
Yun Jiao1, Lu Lu, Robert W Williams, Richard J Smeyne.
Abstract
The etiology of the vast majority of Parkinson's disease (PD) cases is unknown. It is generally accepted that there is an interaction between exposures to environmental agents with underlying genetic sensitivity. Recent epidemiological studies have shown that people living in agricultural communities have an increased risk of PD. Within these communities, paraquat (PQ) is one of the most utilized herbicides. PQ acts as a direct redox cycling agent to induce formation of free radicals and when administered to mice induces the cardinal symptoms of parkinsonism, including loss of TH+-positive dopaminergic (DA) neurons in the ventral midbrain's substantia nigra pars compacta (SNpc). Here we show that PQ-induced SNpc neuron loss is highly dependent on genetic background: C57BL/6J mice rapidly lose ∼50% of their SNpc DA neurons, whereas inbred Swiss-Webster (SWR/J) mice do not show any significant loss. We intercrossed these two strains to map quantitative trait loci (QTLs) that underlie PQ-induced SNpc neuron loss. Using genome-wide linkage analysis we detected two significant QTLs. The first is located on chromosome 5 (Chr 5) centered near D5Mit338, whereas the second is on Chr 14 centered near D14Mit206. These two QTLs map to different loci than a previously identified QTL (Mptp1) that controls a significant portion of strain sensitivity to 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), suggesting that the mechanism of action of these two parkinsonian neurotoxins are different.Entities:
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Year: 2012 PMID: 22291891 PMCID: PMC3265472 DOI: 10.1371/journal.pone.0029447
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
List of Microsatellite Markers and Mendelian Correlations.
| MIT marker | cM | Mendelian Correlation | MIT marker | cM | Mendelian Correlation |
| D1Mit211 | 10.59 | 0.013 | D11Mit78 | 10.44 | 0.247 |
| D1Mit100 | 62.56 | 0.023 | D11Mit5 | 40.59 | 0.142 |
| D1Mit293 | 97.55 | 0.064 | D11Mit334 | 74.06 | 0.169 |
| D2Mit416 | 12.00 | 0.009 | D12Mit169 | 7.03 | 0.352 |
| D2Mit458 | 29.62 | 0.092 | D12Mit214 | 37.86 | 0.253 |
| D2Mit311 | 86.12 | 0.069 | D12Mit280 | 60.94 | 0.392 |
| D3Mit240 | 15.80 | 0.221 | D13Mit106 | 47.75 | 0.362 |
| D3Mit51 | 26.20 | 0.253 | D13Mit254 | 40.95 | 0.392 |
| D3Mit19 | 66.70 | 0.198 | D13Mit78 | 67.21 | 0.253 |
| D4Mit192 | 13.50 | 0.299 |
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| D4Mit78 | 61.15 | 0.197 | D14Mit262 | 37.20 | 0.247 |
| D4Mit13 | 75.67 | 0.121 | D14Mit266 | 64.86 | 0.090 |
| D5Mit233 | 28.55 | 0.250 | D15Mit53 | 6.29 | .0256 |
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| D15Mit229 | 16.31 | 0.310 |
| D5Mit287 | 89.18 | 0.325 | D15Mit161 | 52.78 | 0.203 |
| D6Mit273 | 22.51 | 0.143 | D16Mit181 | 2.90 | 0.066 |
| D6Mit146 | 43.05 | 0.101 | D16Mit4 | 25.43 | 0.034 |
| D6Mit291 | 66.78 | 0.169 | D16Mit106 | 57.68 | 0.067 |
| D7Mit117 | 17.26 | 0.041 | D17Mit30 | 14.26 | 0.037 |
| D7Mit238 | 63.78 | 0.169 | D17Mit139 | 27.40 | 0.352 |
| D7Mit259 | 88.85 | 0.250 | D17Mit42 | 50.30 | 0.066 |
| D8Mit95 | 12.47 | 0.172 | D18Mit223 | 6.60 | 0.037 |
| D8Mit205 | 28.85 | 0.218 | D18Mit188 | 45.88 | 0.253 |
| D8Mit121 | 72.27 | 0.170 | D18Mit213 | 57.33 | 0.351 |
| D9Mit205 | 20.75 | 0.168 | D19Mit90 | 35.97 | 0.233 |
| D9Mit32 | 36.41 | 0.196 | D19Mit137 | 54.60 | 0.221 |
| D9Mit116 | 59.58 | 0.305 | DXMit166 | 28.26 | 0.175 |
| D10Mit247 | 5.81 | 0.231 | DXMit68 | 29.49 | 0.260 |
| D10Mit186 | 38.56 | 0.325 | DXMit117 | 53.75 | 0.314 |
| D10Mit292 | 55.33 | 0.196 | |||
| D10Mit297 | 72.31 | 0.037 |
Figure 1Paraquat-induced cell loss is strain dependent.
(A) After chronic PQ administration, we find that C57BL/6J have a ≈50% decrease in SNpc DA neurons, while SWR have a ≈10% loss of SNpc neurons. (B) TH-immunostained section through rostral SNpc of C57BL/6J mouse. Box is seen at higher magnification in (C). (D) Following chronic administration of PQ to C57BL/6J mice, there is a loss of both DA neurons and fibers. Box is seen at higher magnification in (E). (F). TH-immunostained section through rostral SNpc of SWR mouse. Box is seen at higher magnification in (G). (H) Following chronic administration of PQ to SWR mice, there is a no apparent loss of DA neurons or fibers. Box is seen at higher magnification in (E).
Figure 2Chromosomal maps showing the identified QTL regions.
A 20 cM region (red box) on the distal are of mCHr 5 and the proximal arm of mChr14 were identified by QTL analysis.