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1.
Proc Natl Acad Sci U S A ; 117(51): 32606-32616, 2020 12 22.
Artículo en Inglés | MEDLINE | ID: mdl-33288717

RESUMEN

Stroke is a leading cause of death and disability. Recovery depends on a delicate balance between inflammatory responses and immune suppression, tipping the scale between brain protection and susceptibility to infection. Peripheral cholinergic blockade of immune reactions fine-tunes this immune response, but its molecular regulators are unknown. Here, we report a regulatory shift in small RNA types in patient blood sequenced 2 d after ischemic stroke, comprising massive decreases of microRNA levels and concomitant increases of transfer RNA fragments (tRFs) targeting cholinergic transcripts. Electrophoresis-based size-selection followed by qRT-PCR validated the top six up-regulated tRFs in a separate cohort of stroke patients, and independent datasets of small and long RNA sequencing pinpointed immune cell subsets pivotal to these responses, implicating CD14+ monocytes in the cholinergic inflammatory reflex. In-depth small RNA targeting analyses revealed the most-perturbed pathways following stroke and implied a structural dichotomy between microRNA and tRF target sets. Furthermore, lipopolysaccharide stimulation of murine RAW 264.7 cells and human CD14+ monocytes up-regulated the top six stroke-perturbed tRFs, and overexpression of stroke-inducible tRF-22-WE8SPOX52 using a single-stranded RNA mimic induced down-regulation of immune regulator Z-DNA binding protein 1. In summary, we identified a "changing of the guards" between small RNA types that may systemically affect homeostasis in poststroke immune responses, and pinpointed multiple affected pathways, which opens new venues for establishing therapeutics and biomarkers at the protein and RNA level.


Asunto(s)
Accidente Cerebrovascular Isquémico/genética , Accidente Cerebrovascular Isquémico/inmunología , MicroARNs/inmunología , Sistema Colinérgico no Neuronal/inmunología , ARN de Transferencia/inmunología , Anciano , Animales , Estudios de Casos y Controles , Femenino , Humanos , Inflamación/etiología , Inflamación/genética , Inflamación/inmunología , Accidente Cerebrovascular Isquémico/fisiopatología , Receptores de Lipopolisacáridos/metabolismo , Lipopolisacáridos/farmacología , Masculino , Ratones , MicroARNs/sangre , MicroARNs/genética , Persona de Mediana Edad , Monocitos/fisiología , Sistema Colinérgico no Neuronal/genética , Estudios Prospectivos , Células RAW 264.7 , ARN de Transferencia/sangre , ARN de Transferencia/genética
2.
Am J Physiol Cell Physiol ; 319(2): C321-C330, 2020 08 01.
Artículo en Inglés | MEDLINE | ID: mdl-32551856

RESUMEN

Acetylcholine induces robust electrogenic anion secretion in mammalian intestine and it has long been hypothesized that it mediates the epithelial response through the M3 and, to a lesser extent, the M1 muscarinic receptors in the mouse. However, nicotinic receptors have recently been identified in intestinal enterocytes by quantitative real-time (qRT)-PCR/RNAseq, although any direct influence on intestinal transport has not been identified. We tested the hypothesis that cholinergic-induced anion secretion in the intestine is a result of both muscarinic and nicotinic pathways that are intrinsic to the intestinal epithelia. We developed a method to generate mouse jejunal enteroid monolayers which were used to measure active electrogenic anion secretion by the Ussing chamber/voltage-clamp technique. Here, we show that the cholinergic agonist carbachol (CCh) and the muscarinic agonist bethanechol (BCh) stimulate short-lived, concentration-dependent anion secretion in the epithelial cell-only enteroid monolayers. The muscarinic antagonist atropine completely inhibited CCh- and BCh-induced secretion, while the nicotinic antagonist hexamethonium reduced the CCh response by ~45%. While nicotine alone did not alter anion secretion, it increased the BCh-induced increase in short-circuit current in a concentration-dependent manner; this synergy was prevented by pretreatment with hexamethonium. In addition to being sensitive to hexamethonium, monolayers express both classes of cholinergic receptor by qRT-PCR, including 13 of 16 nicotinic receptor subunits. Our findings indicate that an interaction between muscarinic and nicotinic agonists synergistically stimulates anion secretion in mouse jejunal epithelial cells and identify a role for epithelial nicotinic receptors in anion secretion.


Asunto(s)
Agonistas Muscarínicos/farmacología , Sistema Colinérgico no Neuronal/genética , Receptores Muscarínicos/genética , Receptores Nicotínicos/genética , Acetilcolina/farmacología , Animales , Aniones/metabolismo , Atropina/farmacología , Agonistas Colinérgicos/farmacología , Enterocitos/efectos de los fármacos , Enterocitos/metabolismo , Hexametonio/farmacología , Humanos , Mucosa Intestinal/efectos de los fármacos , Mucosa Intestinal/metabolismo , Intestinos/efectos de los fármacos , Ratones , Sistema Colinérgico no Neuronal/efectos de los fármacos , Receptores Muscarínicos/metabolismo , Receptores Nicotínicos/metabolismo
3.
Int J Biochem Cell Biol ; 123: 105747, 2020 06.
Artículo en Inglés | MEDLINE | ID: mdl-32315771

RESUMEN

OBJECTIVE: To investigate circular RNA (circRNA) expression profile via microarray, and further assess the potential of candidate circRNAs as biomarkers in Alzheimer's disease (AD). METHODS: CircRNA expression profile in cerebrospinal fluid from 8 AD patients and 8 control (Ctrl) subjects was assessed by microarray. Subsequently, 10 candidate circRNAs from microarray were validated by reverse transcription quantitative polymerase chain reaction (RT-qPCR) in cerebrospinal fluid from 80 AD patients and 40 Ctrl subjects. RESULTS: By microarray, 112 circRNAs were upregulated and 51 circRNAs were downregulated in AD patients compared with Ctrl subjects, and these circRNAs were enriched in AD related pathways such as neurotrophin signaling pathway, natural killer cell mediated cytotoxicity and cholinergic synapse. By RT-qPCR, circ-LPAR1, circ-AXL and circ-GPHN were increased, whereas circ-PCCA, circ-HAUS4, circ-KIF18B and circ-TTC39C were decreased in AD patients compared with Ctrl subjects, and these circRNAs were disclosed to predict AD risk by receiver operating characteristics curve analysis. Further forward-stepwise multivariate logistic regression revealed that circ-AXL, circ-GPHN, circ-ITPR3, circ-PCCA and cic-TTC39C were independent predictive factors for AD risk. Besides, in AD patients, circ-AXL and circ-GPHN negatively correlated, while circ-PCCA and circ-HAUS4 positively correlated with mini-mental state examination score; Circ-AXL negatively correlated, while circ-PCCA, circ-HAUS4 and circ-KIF18B positively correlated with Aß42; Circ-AXL and circ-GPHN positively correlated, whereas circ-HAUS4 negatively correlated with t-tau; Circ-AXL positively correlated with p-tau. CONCLUSION: Our study provides an overview of circRNA expression profile in AD, and identifies that circ-AXL, circ-GPHN and circ-PCCA hold clinical implications for guiding disease management in AD patients.


Asunto(s)
Enfermedad de Alzheimer/líquido cefalorraquídeo , Péptidos beta-Amiloides/líquido cefalorraquídeo , Fragmentos de Péptidos/líquido cefalorraquídeo , ARN Circular/líquido cefalorraquídeo , Transducción de Señal/genética , Proteínas tau/líquido cefalorraquídeo , Anciano , Enfermedad de Alzheimer/genética , Péptidos beta-Amiloides/genética , Péptidos beta-Amiloides/metabolismo , Biomarcadores/líquido cefalorraquídeo , Progresión de la Enfermedad , Regulación hacia Abajo , Femenino , Ontología de Genes , Humanos , Células Asesinas Naturales/inmunología , Modelos Logísticos , Masculino , MicroARNs/líquido cefalorraquídeo , MicroARNs/genética , Análisis por Micromatrices , Persona de Mediana Edad , Factores de Crecimiento Nervioso/líquido cefalorraquídeo , Factores de Crecimiento Nervioso/genética , Sistema Colinérgico no Neuronal/genética , Fragmentos de Péptidos/genética , Fragmentos de Péptidos/metabolismo , ARN Circular/genética , Curva ROC , Reacción en Cadena en Tiempo Real de la Polimerasa , Regulación hacia Arriba , Proteínas tau/genética , Proteínas tau/metabolismo
4.
J Mol Cell Cardiol ; 125: 129-139, 2018 12.
Artículo en Inglés | MEDLINE | ID: mdl-30343172

RESUMEN

The autonomic influences on the heart have a ying-yang nature, albeit oversimplified, the interplay between the sympathetic and parasympathetic system (known as the cholinergic system) is often complex and remain poorly understood. Recently, the heart has been recognized to consist of neuronal and non-neuronal cholinergic system (NNCS). The existence of cardiac NNCS has been confirmed by the presence of cholinergic markers in the cardiomyocytes, which are crucial for synthesis (choline acetyltransferase, ChAT), storage (vesicular acetylcholine transporter, VAChT), reuptake of choline for synthesis (high-affinity choline transporter, CHT1) and degradation (acetylcholinesterase, AChE) of acetylcholine (ACh). The non-neuronal ACh released from cardiomyocytes is believed to locally regulate some of the key physiological functions of the heart, such as regulation of heart rate, offsetting hypertrophic signals, maintenance of action potential propagation as well as modulation of cardiac energy metabolism via the muscarinic ACh receptor in an auto/paracrine manner. Apart from this, several studies have also provided evidence for the beneficial role of ACh released from cardiomyocytes against cardiovascular diseases such as sympathetic hyperactivity-induced cardiac remodeling and dysfunction as well as myocardial infarction, confirming the important role of NNCS in disease prevention. In this review, we aim to provide a fundamental overview of cardiac NNCS, and information about its physiological role, regulatory factors as well as its cardioprotective effects. Finally, we propose the different approaches to target cardiac NNCS as an adjunctive treatment to specifically address the withdrawal of neuronal cholinergic system in cardiovascular disease such as heart failure.


Asunto(s)
Miocitos Cardíacos/metabolismo , Sistema Colinérgico no Neuronal/fisiología , Acetilcolina/metabolismo , Animales , Enfermedades Cardiovasculares/metabolismo , Humanos , Sistema Colinérgico no Neuronal/genética
5.
Zhejiang Da Xue Xue Bao Yi Xue Ban ; 46(1): 15-21, 2017 01 25.
Artículo en Chino | MEDLINE | ID: mdl-28436626

RESUMEN

Epilepsy is a chronic neurological disorder, which is not only related to the imbalance between excitatory glutamic neurons and inhibitory GABAergic neurons, but also related to abnormal central cholinergic regulation. This article summarizes the scientific background and experimental data about cholinergic dysfunction in epilepsy from both cellular and network levels, further discusses the exact role of cholinergic system in epilepsy. In the cellular level, several types of epilepsy are believed to be associated with aberrant metabotropic muscarinic receptors in several different brain areas, while the mutations of ionotropic nicotinic receptors have been reported to result in a specific type of epilepsy-autosomal dominant nocturnal frontal lobe epilepsy. In the network level, cholinergic projection neurons as well as their interaction with other neurons may regulate the development of epilepsy, especially the cholinergic circuit from basal forebrain to hippocampus, while cholinergic local interneurons have not been reported to be associated with epilepsy. With the development of optogenetics and other techniques, dissect and regulate cholinergic related epilepsy circuit has become a hotspot of epilepsy research.


Asunto(s)
Neuronas Colinérgicas/química , Neuronas Colinérgicas/patología , Neuronas Colinérgicas/fisiología , Epilepsia/genética , Epilepsia/patología , Epilepsia/fisiopatología , Sistema Colinérgico no Neuronal/fisiología , Acetilcolina/fisiología , Prosencéfalo Basal/patología , Química Encefálica/genética , Química Encefálica/fisiología , Neuronas Colinérgicas/clasificación , Epilepsia del Lóbulo Frontal/genética , Neuronas GABAérgicas/fisiología , Hipocampo/patología , Humanos , Mutación/genética , Mutación/fisiología , Neuronas , Sistema Colinérgico no Neuronal/genética , Receptores Muscarínicos/genética , Receptores Muscarínicos/fisiología , Receptores Nicotínicos/genética , Receptores Nicotínicos/fisiología , Transmisión Sináptica/genética , Transmisión Sináptica/fisiología
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