Abnormal differentiation of dopaminergic neurons in zebrafish trpm7 mutant larvae impairs development of the motor pattern
Abnormal differentiation of dopaminergic neurons in zebrafish trpm7 mutant larvae impairs development of the motor pattern
Transient receptor potential, melastatin-like 7 (Trpm7) is a combined ion channel and kinase implicated in the differentiation or function of many cell types. Early lethality in mice and frogs depleted of the corresponding gene impedes investigation of the functions of this protein particularly during later stages of development. By contrast, zebrafish trpm7 mutant larvae undergo early morphogenesis normally and thus do not have this limitation. The mutant larvae are characterized by multiple defects including melanocyte cell death, transient paralysis, and an ion imbalance that leads to the development of kidney stones. Here we report a requirement for Trpm7 in differentiation or function of dopaminergic neurons in vivo. First, trpm7 mutant larvae are hypomotile and fail to make a dopamine-dependent developmental transition in swim-bout length. Both of these deficits are partially rescued by the application of levodopa or dopamine. Second, histological analysis reveals that in trpm7 mutants a significant fraction of dopaminergic neurons lack expression of tyrosine hydroxylase, the rate-limiting enzyme in dopamine synthesis. Third, trpm7 mutants are unusually sensitive to the neurotoxin 1-methyl-4-phenylpyridinium, an oxidative stressor, and their motility is partially rescued by application of the iron chelator deferoxamine, an anti-oxidant. Finally, in SH-SY5Y cells, which model aspects of human dopaminergic neurons, forced expression of a channel-dead variant of TRPM7 causes cell death. In summary, a forward genetic screen in zebrafish has revealed that both melanocytes and dopaminergic neurons depend on the ion channel Trpm7. The mechanistic underpinning of this dependence requires further investigation.
- University of Minnesota United States
- University of Helsinki Finland
- University of Minnesota System United States
- University of Mary United States
- Rutgers, The State University of New Jersey United States
1-Methyl-4-phenylpyridinium, Patch-Clamp Techniques, Parkinson's, Tyrosine 3-Monooxygenase, Dopamine, TRPM7, TRPM Cation Channels, Deferoxamine, Motor Activity, Protein Serine-Threonine Kinases, Cell Line, Electroretinography, Animals, Molecular Biology, Zebrafish, DNA Primers, Analysis of Variance, Reverse Transcriptase Polymerase Chain Reaction, Dopaminergic Neurons, Cell Differentiation, Cell Biology, Zebrafish Proteins, Larva, Mutation, Melanocytes, Developmental Biology
1-Methyl-4-phenylpyridinium, Patch-Clamp Techniques, Parkinson's, Tyrosine 3-Monooxygenase, Dopamine, TRPM7, TRPM Cation Channels, Deferoxamine, Motor Activity, Protein Serine-Threonine Kinases, Cell Line, Electroretinography, Animals, Molecular Biology, Zebrafish, DNA Primers, Analysis of Variance, Reverse Transcriptase Polymerase Chain Reaction, Dopaminergic Neurons, Cell Differentiation, Cell Biology, Zebrafish Proteins, Larva, Mutation, Melanocytes, Developmental Biology
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