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WKP|Q42876275
(VIAF cluster)
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(WKP)Q42876275
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orcid
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scopus
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(OCoLC)Q42876275
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100
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0 |
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Marta Martinez-vicente
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Marta Martinez-vicente
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wetenschapper
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nl
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670
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Author's A photoconvertible fluorescent reporter to track chaperone-mediated autophagy
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670
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Author's Alpha-synuclein and protein degradation pathways in Parkinson's disease: a pathological feed-back loop
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670
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Author's Altered dynamics of the lysosomal receptor for chaperone-mediated autophagy with age.
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670
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Author's Autophagic Pathways and Parkinson Disease
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670
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Author's Autophagy: a decisive process for stemness
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670
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Author's Autophagy and neurodegeneration: when the cleaning crew goes on strike
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670
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Author's Autophagy and the hallmarks of aging
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670
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Author's Autophagy in Disease and Aging
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670
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Author's Autophagy in neurodegenerative diseases: From pathogenic dysfunction to therapeutic modulation
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670
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Author's Autophagy maintains stemness by preventing senescence
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670
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Author's Backbone 1H, 13C and 15N resonance assignments for the 18.7 kDa GTPase domain of Escherichia coli MnmE protein
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670
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Author's BAX channel activity mediates lysosomal disruption linked to Parkinson disease.
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670
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Author's Brain region- and age-dependent dysregulation of p62 and NBR1 in a mouse model of Huntington's disease
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670
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Author's Brain tyrosinase overexpression implicates age-dependent neuromelanin production in Parkinson's disease pathogenesis
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670
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Author's Cargo recognition failure is responsible for inefficient autophagy in Huntington's disease
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670
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Author's Chaperone-Mediated Autophagy and Parkinson's Disease
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670
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Author's Chaperone-mediated autophagy at a glance
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670
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Author's Constitutive upregulation of chaperone-mediated autophagy in Huntington's disease
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670
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Author's Dysfunctional autophagy is a driver of muscle stem cell functional decline with aging.
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670
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Author's Effects of mutagenesis in the switch I region and conserved arginines of Escherichia coli MnmE protein, a GTPase involved in tRNA modification.
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670
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Author's en scientific article
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670
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Author's Fighting neurodegeneration with rapamycin: mechanistic insights
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670
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Author's Glucocerebrosidase deficiency in dopaminergic neurons induces microglial activation without neurodegeneration.
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670
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Author's Guidelines for the use and interpretation of assays for monitoring autophagy
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670
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Author's Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)
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670
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Author's IKK phosphorylates Huntingtin and targets it for degradation by the proteasome and lysosome.
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670
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Author's Loss of P-type ATPase ATP13A2/PARK9 function induces general lysosomal deficiency and leads to Parkinson disease neurodegeneration.
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670
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Author's Lysosomal impairment in Parkinson's disease
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670
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Author's Methods for Mitochondria and Mitophagy Flux Analyses in Stem Cells of Resting and Regenerating Skeletal Muscle
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670
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Author's Monitoring Autophagy in Muscle Stem Cells
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670
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Author's Multiple ways for α-synuclein degradation
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670
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Author's Mutant HTT (huntingtin) impairs mitophagy in a cellular model of Huntington disease
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670
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Author's Neuronal Mitophagy in Neurodegenerative Diseases
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670
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Author's Protein degradation, aggregation, and misfolding
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670
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Author's Protein degradation and aging
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670
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Author's Structural insights into the GTPase domain of Escherichia coli MnmE protein.
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670
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Author's Synergy and antagonism of macroautophagy and chaperone-mediated autophagy in a cell model of pathological tau aggregation
|
670
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Author's Tabibi Sabbu
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670
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Author's The GTPase activity and C-terminal cysteine of the Escherichia coli MnmE protein are essential for its tRNA modifying function.
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909
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(orcid) 0000000170532625
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909
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(scopus) 6505950559
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912
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scientificarticle
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en scientific article
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1
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912
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guidelinesfortheuseandinterpretationofassaysformonitoringautophagy
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Guidelines for the use and interpretation of assays for monitoring autophagy
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1
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912
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guidelinesfortheuseandinterpretationofassaysformonitoringautophagy3edition
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Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)
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1
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912
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tabibisabbu
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Tabibi Sabbu
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1
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919
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photoconvertiblefluorescentreportertotrackchaperonemediatedautophagy
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A photoconvertible fluorescent reporter to track chaperone-mediated autophagy
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1
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919
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brainregionandagedependentdysregulationofp62andnbr1inamousemodelofhuntingtonsdisease
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Brain region- and age-dependent dysregulation of p62 and NBR1 in a mouse model of Huntington's disease
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1
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919
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multiplewaysforαsynucleindegradation
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Multiple ways for α-synuclein degradation
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1
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919
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braintyrosinaseoverexpressionimplicatesagedependentneuromelaninproductioninparkinsonsdiseasepathogenesis
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Brain tyrosinase overexpression implicates age-dependent neuromelanin production in Parkinson's disease pathogenesis
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1
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919
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mutanthtthuntingtinimpairsmitophagyinacellularmodelofhuntingtondisease
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Mutant HTT (huntingtin) impairs mitophagy in a cellular model of Huntington disease
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1
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919
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neuronalmitophagyinneurodegenerativediseases
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Neuronal Mitophagy in Neurodegenerative Diseases
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1
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919
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proteindegradationaggregationandmisfolding
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Protein degradation, aggregation, and misfolding
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1
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919
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proteindegradationandaging
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Protein degradation and aging
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1
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structuralinsightsintothegtpasedomainofescherichiacolimnmeprotein
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Structural insights into the GTPase domain of Escherichia coli MnmE protein.
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1
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919
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synergyandantagonismofmacroautophagyandchaperonemediatedautophagyinacellmodelofpathologicaltauaggregation
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Synergy and antagonism of macroautophagy and chaperone-mediated autophagy in a cell model of pathological tau aggregation
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1
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919
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cargorecognitionfailureisresponsibleforinefficientautophagyinhuntingtonsdisease
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Cargo recognition failure is responsible for inefficient autophagy in Huntington's disease
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1
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919
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chaperonemediatedautophagyandparkinsonsdisease
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Chaperone-Mediated Autophagy and Parkinson's Disease
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1
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919
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chaperonemediatedautophagyataglance
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Chaperone-mediated autophagy at a glance
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1
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919
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constitutiveupregulationofchaperonemediatedautophagyinhuntingtonsdisease
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Constitutive upregulation of chaperone-mediated autophagy in Huntington's disease
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1
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919
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dysfunctionalautophagyisadriverofmusclestemcellfunctionaldeclinewithaging
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Dysfunctional autophagy is a driver of muscle stem cell functional decline with aging.
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1
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919
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effectsofmutagenesisintheswitch1regionandconservedargininesofescherichiacolimnmeproteinagtpaseinvolvedintrnamodification
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Effects of mutagenesis in the switch I region and conserved arginines of Escherichia coli MnmE protein, a GTPase involved in tRNA modification.
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1
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919
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|
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fightingneurodegenerationwithrapamycinmechanisticinsights
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Fighting neurodegeneration with rapamycin: mechanistic insights
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1
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919
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glucocerebrosidasedeficiencyindopaminergicneuronsinducesmicroglialactivationwithoutneurodegeneration
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Glucocerebrosidase deficiency in dopaminergic neurons induces microglial activation without neurodegeneration.
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1
|
919
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ikkphosphorylateshuntingtinandtargetsitfordegradationbytheproteasomeandlysosome
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IKK phosphorylates Huntingtin and targets it for degradation by the proteasome and lysosome.
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1
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919
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‡a
lossofptypeatpaseatp13a2park9functioninducesgenerallysosomaldeficiencyandleadstoparkinsondiseaseneurodegeneration
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Loss of P-type ATPase ATP13A2/PARK9 function induces general lysosomal deficiency and leads to Parkinson disease neurodegeneration.
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1
|
919
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|
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‡a
lysosomalimpairmentinparkinsonsdisease
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Lysosomal impairment in Parkinson's disease
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1
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919
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methodsformitochondriaandmitophagyfluxanalysesinstemcellsofrestingandregeneratingskeletalmuscle
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Methods for Mitochondria and Mitophagy Flux Analyses in Stem Cells of Resting and Regenerating Skeletal Muscle
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1
|
919
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‡a
monitoringautophagyinmusclestemcells
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Monitoring Autophagy in Muscle Stem Cells
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1
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919
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gtpaseactivityand100terminalcysteineoftheescherichiacolimnmeproteinareessentialforitstrnamodifyingfunction
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The GTPase activity and C-terminal cysteine of the Escherichia coli MnmE protein are essential for its tRNA modifying function.
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1
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919
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baxchannelactivitymediateslysosomaldisruptionlinkedtoparkinsondisease
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BAX channel activity mediates lysosomal disruption linked to Parkinson disease.
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1
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919
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backbone1h13cand15nresonanceassignmentsforthe187kdagtpasedomainofescherichiacolimnmeprotein
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Backbone 1H, 13C and 15N resonance assignments for the 18.7 kDa GTPase domain of Escherichia coli MnmE protein
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1
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919
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autophagymaintainsstemnessbypreventingsenescence
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Autophagy maintains stemness by preventing senescence
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1
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919
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autophagyinneurodegenerativediseasesfrompathogenicdysfunctiontotherapeuticmodulation
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Autophagy in neurodegenerative diseases: From pathogenic dysfunction to therapeutic modulation
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1
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919
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autophagyindiseaseandaging
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Autophagy in Disease and Aging
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1
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919
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autophagyandthehallmarksofaging
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Autophagy and the hallmarks of aging
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1
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919
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autophagyandneurodegenerationwhenthecleaningcrewgoesonstrike
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Autophagy and neurodegeneration: when the cleaning crew goes on strike
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1
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919
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autophagyadecisiveprocessforstemness
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Autophagy: a decisive process for stemness
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1
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919
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autophagicpathwaysandparkinsondisease
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Autophagic Pathways and Parkinson Disease
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1
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altereddynamicsofthelysosomalreceptorforchaperonemediatedautophagywithage
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Altered dynamics of the lysosomal receptor for chaperone-mediated autophagy with age.
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1
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919
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alphasynucleinandproteindegradationpathwaysinparkinsonsdiseaseapathologicalfeedbackloop
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Alpha-synuclein and protein degradation pathways in Parkinson's disease: a pathological feed-back loop
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