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Regulation of mitochondrial dynamics and function by melatonin type 1 receptor in parkinson’s disease
by
Ma, Quan-Hong
, Jiang, Shu-Min
, Wang, Jian-Min
, Liu, Chun-Feng
, Sun, Yan-Rui
, Lv, Qian-Kun
, Liu, Jun-Yi
, Wang, Xiao-Bo
, Wang, Fen
, Cao, Bing-Er
, Qi, Li-Li
in
alpha-Synuclein - metabolism
/ Animals
/ Apoptosis
/ Atrophy
/ Autophagy
/ Autophagy - genetics
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ cAMP-dependent protein kinase
/ Cell Biology
/ Cell death
/ Disease
/ Disease Models, Animal
/ Dopamine receptors
/ Dynamin
/ Dynamins - genetics
/ Dynamins - metabolism
/ etiology
/ Extracellular signal-regulated kinase
/ Fibrils
/ Fission
/ GTP Phosphohydrolases - genetics
/ GTP Phosphohydrolases - metabolism
/ HEK293 Cells
/ Humans
/ Inflammation
/ Kinases
/ Lewy bodies
/ Life Sciences
/ Melatonin
/ Melatonin receptor MT1
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Microtubule-Associated Proteins - metabolism
/ Mitochondria
/ Mitochondria dynamics
/ Mitochondrial Dynamics
/ Mitochondrial Membrane Transport Proteins - genetics
/ Mitochondrial Membrane Transport Proteins - metabolism
/ Mitophagy
/ Movement disorders
/ MPTP
/ Neurodegenerative diseases
/ neurons
/ Optic atrophy
/ Original Article
/ Oxidative stress
/ Parkinson Disease - genetics
/ Parkinson Disease - metabolism
/ Parkinson Disease - pathology
/ Parkinson's disease
/ Pathogenesis
/ Penicillin
/ Phosphorylation
/ Protein kinase A
/ Proteins
/ Receptor, Melatonin, MT1 - genetics
/ Receptor, Melatonin, MT1 - metabolism
/ Receptors
/ sleep
/ Sleep disorders
/ Substantia nigra
/ Synuclein
/ Α-synuclein
2025
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Regulation of mitochondrial dynamics and function by melatonin type 1 receptor in parkinson’s disease
by
Ma, Quan-Hong
, Jiang, Shu-Min
, Wang, Jian-Min
, Liu, Chun-Feng
, Sun, Yan-Rui
, Lv, Qian-Kun
, Liu, Jun-Yi
, Wang, Xiao-Bo
, Wang, Fen
, Cao, Bing-Er
, Qi, Li-Li
in
alpha-Synuclein - metabolism
/ Animals
/ Apoptosis
/ Atrophy
/ Autophagy
/ Autophagy - genetics
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ cAMP-dependent protein kinase
/ Cell Biology
/ Cell death
/ Disease
/ Disease Models, Animal
/ Dopamine receptors
/ Dynamin
/ Dynamins - genetics
/ Dynamins - metabolism
/ etiology
/ Extracellular signal-regulated kinase
/ Fibrils
/ Fission
/ GTP Phosphohydrolases - genetics
/ GTP Phosphohydrolases - metabolism
/ HEK293 Cells
/ Humans
/ Inflammation
/ Kinases
/ Lewy bodies
/ Life Sciences
/ Melatonin
/ Melatonin receptor MT1
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Microtubule-Associated Proteins - metabolism
/ Mitochondria
/ Mitochondria dynamics
/ Mitochondrial Dynamics
/ Mitochondrial Membrane Transport Proteins - genetics
/ Mitochondrial Membrane Transport Proteins - metabolism
/ Mitophagy
/ Movement disorders
/ MPTP
/ Neurodegenerative diseases
/ neurons
/ Optic atrophy
/ Original Article
/ Oxidative stress
/ Parkinson Disease - genetics
/ Parkinson Disease - metabolism
/ Parkinson Disease - pathology
/ Parkinson's disease
/ Pathogenesis
/ Penicillin
/ Phosphorylation
/ Protein kinase A
/ Proteins
/ Receptor, Melatonin, MT1 - genetics
/ Receptor, Melatonin, MT1 - metabolism
/ Receptors
/ sleep
/ Sleep disorders
/ Substantia nigra
/ Synuclein
/ Α-synuclein
2025
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Regulation of mitochondrial dynamics and function by melatonin type 1 receptor in parkinson’s disease
by
Ma, Quan-Hong
, Jiang, Shu-Min
, Wang, Jian-Min
, Liu, Chun-Feng
, Sun, Yan-Rui
, Lv, Qian-Kun
, Liu, Jun-Yi
, Wang, Xiao-Bo
, Wang, Fen
, Cao, Bing-Er
, Qi, Li-Li
in
alpha-Synuclein - metabolism
/ Animals
/ Apoptosis
/ Atrophy
/ Autophagy
/ Autophagy - genetics
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ cAMP-dependent protein kinase
/ Cell Biology
/ Cell death
/ Disease
/ Disease Models, Animal
/ Dopamine receptors
/ Dynamin
/ Dynamins - genetics
/ Dynamins - metabolism
/ etiology
/ Extracellular signal-regulated kinase
/ Fibrils
/ Fission
/ GTP Phosphohydrolases - genetics
/ GTP Phosphohydrolases - metabolism
/ HEK293 Cells
/ Humans
/ Inflammation
/ Kinases
/ Lewy bodies
/ Life Sciences
/ Melatonin
/ Melatonin receptor MT1
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Microtubule-Associated Proteins - metabolism
/ Mitochondria
/ Mitochondria dynamics
/ Mitochondrial Dynamics
/ Mitochondrial Membrane Transport Proteins - genetics
/ Mitochondrial Membrane Transport Proteins - metabolism
/ Mitophagy
/ Movement disorders
/ MPTP
/ Neurodegenerative diseases
/ neurons
/ Optic atrophy
/ Original Article
/ Oxidative stress
/ Parkinson Disease - genetics
/ Parkinson Disease - metabolism
/ Parkinson Disease - pathology
/ Parkinson's disease
/ Pathogenesis
/ Penicillin
/ Phosphorylation
/ Protein kinase A
/ Proteins
/ Receptor, Melatonin, MT1 - genetics
/ Receptor, Melatonin, MT1 - metabolism
/ Receptors
/ sleep
/ Sleep disorders
/ Substantia nigra
/ Synuclein
/ Α-synuclein
2025
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Regulation of mitochondrial dynamics and function by melatonin type 1 receptor in parkinson’s disease
Journal Article
Regulation of mitochondrial dynamics and function by melatonin type 1 receptor in parkinson’s disease
2025
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Overview
Parkinson’s disease (PD) is a neurodegenerative disease characterized by dopaminergic neuron loss and Lewy bodies in the substantia nigra. Abnormal mitochondrial function and accumulated α-synuclein (α-syn) are key etiological factors of PD. Melatonin type 1 receptor (MT1) regulates sleep upon activation by melatonin and may be reduced in PD patients. However, the role of MT1 in PD pathogenesis remains elusive. In this study, we found knockdown of MT1 caused mitochondrial dysfunction, mitochondrial fission and mitophagy in SH-SY5Y cells. Expression of mitochondrial fission protein dynamin-related protein 1 (DRP1) was increased and expression of fusion proteins optic atrophy 1 (OPA1), mitofusin 1 (MFN1) and mitofusin 2 (MFN2) were decreased. This was probably attributed to decreased phosphorylation of DRP1 at S637 by protein kinase A (PKA) and increased phosphorylation at S616 by extracellular-regulated kinase 1/2 (ERK1/2). Loss of MT1 exacerbated mitochondrial fission without influencing mitophagy, TH expression and movement in an MPTP-induced mouse model. Neuronal MT1 deficiency aggravated preformed fibrils induced autophagy inhibition and α-syn aggregation. Overexpression of MT1 reduced mitochondrial fission, increased LC3II expression and decreased P62 accumulation to promote autophagy in HEK293T cells, thus mitigating aggregation of α-syn. This study demonstrates the function of MT1 in mitochondria and autophagy, which sheds further light on PD prevention targeting MT1.
Publisher
Springer International Publishing,Springer Nature B.V,Springer
Subject
/ Animals
/ Atrophy
/ Biomedical and Life Sciences
/ cAMP-dependent protein kinase
/ Disease
/ Dynamin
/ etiology
/ Extracellular signal-regulated kinase
/ Fibrils
/ Fission
/ GTP Phosphohydrolases - genetics
/ GTP Phosphohydrolases - metabolism
/ Humans
/ Kinases
/ Mice
/ Microtubule-Associated Proteins - metabolism
/ Mitochondrial Membrane Transport Proteins - genetics
/ Mitochondrial Membrane Transport Proteins - metabolism
/ MPTP
/ neurons
/ Parkinson Disease - genetics
/ Parkinson Disease - metabolism
/ Parkinson Disease - pathology
/ Proteins
/ Receptor, Melatonin, MT1 - genetics
/ Receptor, Melatonin, MT1 - metabolism
/ sleep
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