4.2 Article

A new brain dopamine-deficient Drosophila and its pharmacological and genetic rescue

期刊

GENES BRAIN AND BEHAVIOR
卷 16, 期 3, 页码 394-403

出版社

WILEY
DOI: 10.1111/gbb.12353

关键词

Carbiodopa; central complex; Dopamine deficiency; dopamine rescue; Drosophila; Drosophila behavior; genetic model of Parkinson's disease; L-DOPA; mushroom body; Parkinson's disease

资金

  1. NIH [R01 GM GM84128]
  2. Federation pour la Recherche sur le Cerveau
  3. Fondation de France

向作者/读者索取更多资源

Dopamine (DA) is a neurotransmitter with conserved behavioral roles between invertebrate and vertebrate animals. In addition to its neural functions, in insects DA is a critical substrate for cuticle pigmentation and hardening. Drosophila tyrosine hydroxylase (DTH) is the rate limiting enzyme for DA biosynthesis. Viable brain DA-deficient flies were previously generated using tissue-selective GAL4-UAS binary expression rescue of a DTH null mutation and these flies show specific behavioral impairments. To circumvent the limitations of rescue via binary expression, here we achieve rescue utilizing genomically integrated mutant DTH. As expected, our DA-deficient flies have no detectable DTH or DA in the brain, and show reduced locomotor activity. This deficit can be rescued by L-DOPA/carbidopa feeding, similar to human Parkinson's disease treatment. Genetic rescue via GAL4/UAS-DTH was also successful, although this required the generation of a new UAS-DTH1 transgene devoid of most untranslated regions, as existing UAS-DTH transgenes express in the brain without a Gal4 driver via endogenous regulatory elements. A surprising finding of our newly constructed UAS-DTH1m is that it expresses DTH at an undetectable levelwhen regulated by dopaminergic GAL4 drivers evenwhen fully rescuing DA, indicating that DTH immunostaining is not necessarily a valid marker for DA expression. This finding necessitated optimizing DA immunohistochemistry, showing details of DA innervation to the mushroom body and the central complex. When DA rescue is limited to specific DA neurons, DA does not diffuse beyond the DTH-expressing terminals, such that DA signaling can be limited to very specific brain regions.

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