Literature DB >> 20437561

Dopamine-dependent motor learning: insight into levodopa's long-duration response.

Jeff A Beeler1, Zhen Fang Huang Cao, Mazen A Kheirbek, Yunmin Ding, Jessica Koranda, Mari Murakami, Un Jung Kang, Xiaoxi Zhuang.   

Abstract

OBJECTIVE: Dopamine (DA) is critical for motor performance, motor learning, and corticostriatal plasticity. The relationship between motor performance and learning, and the role of DA in the mediation of them, however, remain unclear.
METHODS: To examine this question, we took advantage of PITx3-deficient mice (aphakia mice), in which DA in the dorsal striatum is reduced by 90%. PITx3-deficient mice do not display obvious motor deficits in their home cage, but are impaired in motor tasks that require new motor skills. We used the accelerating rotarod as a motor learning task.
RESULTS: We show that the deficiency in motor skill learning in PITx3(-/-) is dramatic and can be rescued with levodopa treatment. In addition, cessation of levodopa treatment after acquisition of the motor skill does not result in an immediate drop in performance. Instead, there is a gradual decline of performance that lasts for a few days, which is not related to levodopa pharmacokinetics. We show that this gradual decline is dependent on the retesting experience.
INTERPRETATION: This observation resembles the long-duration response to levodopa therapy in its slow buildup of improvement after the initiation of therapy and gradual degradation. We hypothesize that motor learning may play a significant, underappreciated role in the symptomatology of Parkinson disease as well as in the therapeutic effects of levodopa. We suggest that the important, yet enigmatic long-duration response to chronic levodopa treatment is a manifestation of rescued motor learning.

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Year:  2010        PMID: 20437561      PMCID: PMC3129617          DOI: 10.1002/ana.21947

Source DB:  PubMed          Journal:  Ann Neurol        ISSN: 0364-5134            Impact factor:   10.422


  40 in total

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2.  Pitx3 is required for development of substantia nigra dopaminergic neurons.

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Journal:  Proc Natl Acad Sci U S A       Date:  2003-03-24       Impact factor: 11.205

3.  Apomorphine responses in Parkinson's disease and the pathogenesis of motor complications.

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4.  Procedural motor learning in Parkinson's disease.

Authors:  H I Krebs; N Hogan; W Hening; S V Adamovich; H Poizner
Journal:  Exp Brain Res       Date:  2001-10-18       Impact factor: 1.972

5.  DATATOP: a multicenter controlled clinical trial in early Parkinson's disease. Parkinson Study Group.

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6.  Practice as an intervention to improve speeded motor performance and motor learning in Parkinson's disease.

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7.  Motor deficits and altered striatal gene expression in aphakia (ak) mice.

Authors:  Bhupinder Singh; Jean H Wilson; Hema H Vasavada; Zhenchao Guo; Heather G Allore; Caroline J Zeiss
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8.  Selective loss of dopaminergic neurons in the substantia nigra of Pitx3-deficient aphakia mice.

Authors:  Dong-Youn Hwang; Paul Ardayfio; Un Jung Kang; Elena V Semina; Kwang-Soo Kim
Journal:  Brain Res Mol Brain Res       Date:  2003-06-10

9.  The subacute levodopa test for evaluating long-duration response in Parkinson's disease.

Authors:  A Quattrone; M Zappia; U Aguglia; D Branca; R Colao; R Montesanti; G Nicoletti; A Palmieri; G Parlato; M Rizzo
Journal:  Ann Neurol       Date:  1995-09       Impact factor: 10.422

10.  A neurocomputational account of catalepsy sensitization induced by D2 receptor blockade in rats: context dependency, extinction, and renewal.

Authors:  Thomas V Wiecki; Katrin Riedinger; Andreas von Ameln-Mayerhofer; Werner J Schmidt; Michael J Frank
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  41 in total

1.  L-dopa reverses behavioral deficits in the Pitx3 mouse fetus.

Authors:  Gale A Kleven; Heather M Booth; Marco Voogd; April E Ronca
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2.  Enhanced striatal cholinergic neuronal activity mediates L-DOPA-induced dyskinesia in parkinsonian mice.

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Review 3.  Preservation of function in Parkinson's disease: what's learning got to do with it?

Authors:  Jeff A Beeler
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4.  Exercise-enhanced neuroplasticity targeting motor and cognitive circuitry in Parkinson's disease.

Authors:  Giselle M Petzinger; Beth E Fisher; Sarah McEwen; Jeff A Beeler; John P Walsh; Michael W Jakowec
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5.  Nicotinic receptors regulate the dynamic range of dopamine release in vivo.

Authors:  Jessica L Koranda; Jackson J Cone; Daniel S McGehee; Mitchell F Roitman; Jeff A Beeler; Xiaoxi Zhuang
Journal:  J Neurophysiol       Date:  2013-10-02       Impact factor: 2.714

6.  Distinct Connectivity and Functionality of Aldehyde Dehydrogenase 1a1-Positive Nigrostriatal Dopaminergic Neurons in Motor Learning.

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7.  Cyclic AMP and afferent activity govern bidirectional synaptic plasticity in striatopallidal neurons.

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8.  Dopamine dependency for acquisition and performance of Pavlovian conditioned response.

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Review 9.  The role of neuroplasticity in dopaminergic therapy for Parkinson disease.

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10.  Postural motor learning in people with Parkinson's disease.

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