p(HGNC:HTT)
This mechanism may be involved in its promotion of autophagy, reduction in cel- lular levels of α-synuclein, SOD1, Htt and tau 126 , ame- lioration of motor function in a P301L mouse model of tauopathy 127 and slowing of disease progression in SOD1 mice 128 . PubMed:30116051
Indeed, clonidine and rilmenidine, two G i /G o -coupled α 2 -adrenergic receptor and imidazoline 1 receptor agonists, stimulate autophagy and cleared Htt in cellular 103 and animal models of HD 104 . PubMed:30116051
Indeed, clonidine and rilmenidine, two G i /G o -coupled α 2 -adrenergic receptor and imidazoline 1 receptor agonists, stimulate autophagy and cleared Htt in cellular 103 and animal models of HD 104 . PubMed:30116051
The ‘anti-ageing’ agent resveratrol is thought to indi- rectly recruit AMPK via activation of calcium/calmodulin- dependent protein kinase kinase 2 (CAMKK2), which, acting in synergy with Ca 2+ , exerts its effects via Thr172 phosphorylation 113 . This action, among others (below), is involved in its reduction of Aβ levels in N2a cells and neurons 114 and the elimination of Aβ and Htt in animal models of AD and HD 114,115 . PubMed:30116051
Enhancing auto- phagy with rapamycin reduced levels of α-synuclein, FUS and Htt 130–132 . PubMed:30116051
Htt is not efficiently cleared by CMA, and the same appears to hold for its fragments and mutant and post- translationally modified forms, although the precise role of CMA in Htt elimination remains to be more fully defined 2,45–47 . PubMed:30116051
Thus,Huntingtin was found to be ubiquitinated and also to interact with E2-25 kDa (Kalchman et al., 1996). PubMed:14556719
In a cell culture model, they overexpressed mutant Huntingtin and observed proteasomal inhibition accompanied by cell cycle arrest PubMed:14556719
In a cell culture model, they overexpressed mutant Huntingtin and observed proteasomal inhibition accompanied by cell cycle arrest PubMed:14556719
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If you find BEL Commons useful in your work, please consider citing: Hoyt, C. T., Domingo-Fernández, D., & Hofmann-Apitius, M. (2018). BEL Commons: an environment for exploration and analysis of networks encoded in Biological Expression Language. Database, 2018(3), 1–11.