The microtubular system is emerging as a cell target in neurodegeneration evoked by the Parkinsonism-inducing neurotoxin N-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) and its toxic metabolite N-methyl-4-phenylpyridinium (MPP+). Looking for a direct effect of the neurotoxin on microtubules, we have undertaken an in vitro study by using microtubule protein purified from bovine brain. We show that MPP+, but not MPTP, modifies the initial rate and the critical concentration of assembly without affecting microtubule ultrastructure. These findings strengthen the hypothesis for the role of microtubules in the transduction of MPP+ neurotoxic effect and, probably, in neuronal cell death
The toxicity caused by cell exposure to 1-methyl-4-phenylpyridinium ion (MPP+) is a useful model in ...
The microtubule (MT) system is important for many aspects of neuronal function, including motility, ...
1-Methyl, 4-phenyl, 1,2,3,6-tetrahydropiridine (MPTP) is a neurotoxin, widely used to produce experi...
Dysfunction of the microtubule system is emerging as a contributing factor in a number of neurodegen...
AbstractDysfunction of the microtubule system is emerging as a contributing factor in a number of ne...
Dysfunction of microtubule system is emerging as a novel contributing factor in Parkinson’s disease ...
AbstractDysfunction of the microtubule system is emerging as a contributing factor in a number of ne...
The molecular pathways implicated in neurodegenerative disorders are gradually being elucidated and ...
Dysfunction of the microtubule (MT) system is an emerging theme in the pathogenesis of Parkinson\u20...
Dysfunction of axonal transport is a common theme in many neurodegenerative disease, and recent data...
Microtubules (MTs) are dynamically unstable polymers that interconvert stochastically between polyme...
It is widely believed that the nigrostriatal toxicity of MPTP is due to its oxidation by brain monoa...
It is widely believed that the nigrostriatal toxicity of MPTP is due to its oxidation by brain monoa...
AbstractThis review summarizes advances in our understanding of the biochemical events which underli...
Both genetic and environmental factors have been linked to Parkinson’s disease (PD), a di...
The toxicity caused by cell exposure to 1-methyl-4-phenylpyridinium ion (MPP+) is a useful model in ...
The microtubule (MT) system is important for many aspects of neuronal function, including motility, ...
1-Methyl, 4-phenyl, 1,2,3,6-tetrahydropiridine (MPTP) is a neurotoxin, widely used to produce experi...
Dysfunction of the microtubule system is emerging as a contributing factor in a number of neurodegen...
AbstractDysfunction of the microtubule system is emerging as a contributing factor in a number of ne...
Dysfunction of microtubule system is emerging as a novel contributing factor in Parkinson’s disease ...
AbstractDysfunction of the microtubule system is emerging as a contributing factor in a number of ne...
The molecular pathways implicated in neurodegenerative disorders are gradually being elucidated and ...
Dysfunction of the microtubule (MT) system is an emerging theme in the pathogenesis of Parkinson\u20...
Dysfunction of axonal transport is a common theme in many neurodegenerative disease, and recent data...
Microtubules (MTs) are dynamically unstable polymers that interconvert stochastically between polyme...
It is widely believed that the nigrostriatal toxicity of MPTP is due to its oxidation by brain monoa...
It is widely believed that the nigrostriatal toxicity of MPTP is due to its oxidation by brain monoa...
AbstractThis review summarizes advances in our understanding of the biochemical events which underli...
Both genetic and environmental factors have been linked to Parkinson’s disease (PD), a di...
The toxicity caused by cell exposure to 1-methyl-4-phenylpyridinium ion (MPP+) is a useful model in ...
The microtubule (MT) system is important for many aspects of neuronal function, including motility, ...
1-Methyl, 4-phenyl, 1,2,3,6-tetrahydropiridine (MPTP) is a neurotoxin, widely used to produce experi...