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1.
Mol Psychiatry ; 26(10): 6083-6099, 2021 10.
Artigo em Inglês | MEDLINE | ID: mdl-34234281

RESUMO

Familial Parkinson disease (PD) is associated with rare genetic mutations, but the etiology in most patients with sporadic (s)PD is largely unknown, and the basis for its progression to dementia (sPDD) is poorly characterized. We have identified that loss of IFNß or IFNAR1, the receptor for IFNα/ß, causes pathological and behavioral changes resembling PDD, prompting us to hypothesize that dysregulated genes in IFNß-IFNAR signaling pathway predispose one to sPD. By transcriptomic analysis, we found defective neuronal IFNß-IFNAR signaling, including particularly elevated PIAS2 associated with sPDD. With meta-analysis of GWASs, we identified sequence variants in IFNß-IFNAR-related genes in sPD patients. Furthermore, sPDD patients expressed higher levels of PIAS2 mRNA and protein in neurons. To determine its function in brain, we overexpressed PIAS2 under a neuronal promoter, alone or with human α-synuclein, in the brains of mice, which caused motor and cognitive impairments and correlated with intraneuronal phosphorylated (p)α-synuclein accumulation and dopaminergic neuron loss. Ectopic expression of neuronal PIAS2 blocked mitophagy, increased the accumulation of senescent mitochondrial and oxidative stress, as evidenced by excessive oxDJ1 and 8OHdG, by inactivating ERK1/2-P53 signaling. Conversely, PIAS2 knockdown rescued the clinicopathological manifestations of PDD in Ifnb-/- mice on restoring mitochondrial homeostasis, oxidative stress, and pERK1/2-pP53 signaling. The regulation of JAK-STAT2-PIAS2 signaling was crucial for neurite outgrowth and neuronal survival and excitability and thus might prevent cognitive impairments. Our findings provide insights into the progression of sPD and dementia and have implications for new therapeutic approaches.


Assuntos
Demência , Interferon beta/metabolismo , Doença de Parkinson , Proteínas Inibidoras de STAT Ativados , Transdução de Sinais , Animais , Demência/genética , Neurônios Dopaminérgicos/metabolismo , Humanos , Camundongos , Camundongos Knockout , Degeneração Neural , Doença de Parkinson/genética , Proteínas Inibidoras de STAT Ativados/genética , alfa-Sinucleína/metabolismo
2.
J Neurophysiol ; 122(3): 970-974, 2019 09 01.
Artigo em Inglês | MEDLINE | ID: mdl-31291169

RESUMO

Tremor is a common symptom for the most prevalent neurological disorders, including essential tremor, spinal cord injury, multiple sclerosis, or Parkinson's disease. Despite the devastating effects of tremor on life quality, available treatments are few and unspecific. Because of the need for specific and costly devices, tremor is rarely quantified by laboratories studying motor control without a genuine interest in trembling. We present a simple, reliable, and affordable method aimed at monitoring tremor in rodents, with an accuracy comparable to that of expensive, commercially available equipment. We took advantage of the accelerometer integrated in modern mobile phones working with operating systems capable of running downloaded apps. By fixing a smartphone to a cage suspended by rubber bands, we were able to detect faint vibrations of the cage. With a mouse in the cage, we showed that the acceleration signals on two horizontal axes were sufficient for the detection of physiological tremor and harmaline-induced tremor. We discuss the advantages and limitations of our method.NEW & NOTEWORTHY The majority of patients suffering from neurological disorders suffer from tremor that severely disrupts their life quality. Because of the high cost of specific scientific equipment, tremor is rarely quantified by laboratories working on motor behavior. For this reason, the potential anti-tremor effect of most compounds tested in animals remains unknown. We describe an affordable technique that will allow any laboratory to measure tremor accurately with a smartphone.


Assuntos
Acelerometria/instrumentação , Tremor Essencial/diagnóstico , Smartphone/instrumentação , Acelerometria/métodos , Animais , Estimulantes do Sistema Nervoso Central/farmacologia , Modelos Animais de Doenças , Tremor Essencial/induzido quimicamente , Feminino , Harmalina/farmacologia , Humanos , Camundongos , Camundongos Endogâmicos C57BL
3.
Trends Neurosci ; 46(6): 418-425, 2023 06.
Artigo em Inglês | MEDLINE | ID: mdl-37003933

RESUMO

The integration of external information with the internal state of the body is central to the survival of virtually every multicellular organism. However, a complete picture of the mechanisms that govern this process is lacking. In this opinion article, we synthesize evidence demonstrating that astrocytes sense the momentary arousal state - through neuromodulator release - as well as the sensory inputs - through local synaptic activity - and respond to them with changes in calcium (Ca2+) signaling. We hypothesize that astrocytes integrate sensory signals with the internal state and that this process is necessary to secure optimal behavior. Finally, we argue that dysfunctional astrocytic Ca2+ signaling could be an underlying factor in disorders characterized by disrupted sensory processing.


Assuntos
Astrócitos , Transdução de Sinais , Humanos , Sensação , Sinalização do Cálcio , Cálcio/metabolismo
4.
Cell Metab ; 34(1): 9-10, 2022 01 04.
Artigo em Inglês | MEDLINE | ID: mdl-34986340

RESUMO

How body metabolism impacts sensory processing in the brain remains unresolved. In a recent study in Neuron, Padamsey et al. (2021) revealed that when the body is food restricted for several weeks, neurons in the visual cortex reduce their energy consumption at the cost of response selectivity and visual performance.


Assuntos
Somatotipos , Córtex Visual , Mapeamento Encefálico , Neurônios , Sensação
5.
STAR Protoc ; 3(4): 101701, 2022 12 16.
Artigo em Inglês | MEDLINE | ID: mdl-36107745

RESUMO

Here, we present a protocol for using a versatile treadmill system to measure locomotion and neural activity at high temporal resolution in head-fixed mice. We first describe the assembly of the treadmill system. We then detail surgical implantation of the headplate on the mouse skull, followed by habituation of mice to locomotion on the treadmill system. The system is compact, movable, and simple to synchronize with other data streams, making it ideal for monitoring brain activity in diverse behavioral frameworks. For complete details on the use and execution of this protocol, please refer to Rasmussen et al. (2019).


Assuntos
Locomoção , Animais , Camundongos
6.
Nat Neurosci ; 24(5): 658-666, 2021 05.
Artigo em Inglês | MEDLINE | ID: mdl-33737752

RESUMO

Cannabinoids reduce tremor associated with motor disorders induced by injuries and neurodegenerative disease. Here we show that this effect is mediated by cannabinoid receptors on astrocytes in the ventral horn of the spinal cord, where alternating limb movements are initiated. We first demonstrate that tremor is reduced in a mouse model of essential tremor after intrathecal injection of the cannabinoid analog WIN55,212-2. We investigate the underlying mechanism using electrophysiological recordings in spinal cord slices and show that endocannabinoids released from depolarized interneurons activate astrocytic cannabinoid receptors, causing an increase in intracellular Ca2+, subsequent release of purines and inhibition of excitatory neurotransmission. Finally, we show that the anti-tremor action of WIN55,212-2 in the spinal cords of mice is suppressed after knocking out CB1 receptors in astrocytes. Our data suggest that cannabinoids reduce tremor via their action on spinal astrocytes.


Assuntos
Astrócitos/metabolismo , Tremor Essencial/metabolismo , Interneurônios/metabolismo , Receptores de Canabinoides/metabolismo , Medula Espinal/metabolismo , Animais , Astrócitos/efeitos dos fármacos , Benzoxazinas/farmacologia , Agonistas de Receptores de Canabinoides/farmacologia , Modelos Animais de Doenças , Interneurônios/efeitos dos fármacos , Camundongos , Morfolinas/farmacologia , Naftalenos/farmacologia , Medula Espinal/efeitos dos fármacos , Transmissão Sináptica/efeitos dos fármacos , Transmissão Sináptica/fisiologia
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