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1.
Mol Ther ; 28(9): 1938-1952, 2020 09 02.
Artículo en Inglés | MEDLINE | ID: mdl-32763143

RESUMEN

CRISPR-mediated DNA base editors, which include cytosine base editors (CBEs) and adenine base editors (ABEs), are promising tools that can induce point mutations at desired sites in a targeted manner to correct or disrupt gene expression. Their high editing efficiency, coupled with their ability to generate a targeted mutation without generating a DNA double-strand break (DSB) or requiring a donor DNA template, suggests that DNA base editors will be useful for treating genetic diseases, among other applications. However, this hope has recently been challenged by the discovery of DNA base editor shortcomings, including off-target DNA editing, the generation of bystander mutations, and promiscuous deamination effects in both DNA and RNA, which arise from the main DNA base editor constituents, a Cas nuclease variant and a deaminase. In this review, we summarize information about the DNA base editors that have been developed to date, introduce their associated potential challenges, and describe current efforts to minimize or mitigate those issues of DNA base editors.


Asunto(s)
Sistemas CRISPR-Cas , ADN/genética , Edición Génica/métodos , ARN Guía de Kinetoplastida/genética , Proteína 9 Asociada a CRISPR/genética , ADN/metabolismo , Roturas del ADN de Doble Cadena , Replicación del ADN/genética , Desaminación , Humanos , Mutación Puntual , ARN Guía de Kinetoplastida/metabolismo
2.
Int J Mol Sci ; 22(12)2021 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-34203807

RESUMEN

Genome editing using CRISPR-Cas9 nucleases is based on the repair of the DNA double-strand break (DSB). In eukaryotic cells, DSBs are rejoined through homology-directed repair (HDR), non-homologous end joining (NHEJ) or microhomology-mediated end joining (MMEJ) pathways. Among these, it is thought that the NHEJ pathway is dominant and occurs throughout a cell cycle. NHEJ-based DSB repair is known to be error-prone; however, there are few studies that delve into it deeply in endogenous genes. Here, we quantify the degree of NHEJ-based DSB repair accuracy (termed NHEJ accuracy) in human-originated cells by incorporating exogenous DNA oligonucleotides. Through an analysis of joined sequences between the exogenous DNA and the endogenous target after DSBs occur, we determined that the average value of NHEJ accuracy is approximately 75% in maximum in HEK 293T cells. In a deep analysis, we found that NHEJ accuracy is sequence-dependent and the value at the DSB end proximal to a protospacer adjacent motif (PAM) is relatively lower than that at the DSB end distal to the PAM. In addition, we observed a negative correlation between the insertion mutation ratio and the degree of NHEJ accuracy. Our findings would broaden the understanding of Cas9-mediated genome editing.


Asunto(s)
Repeticiones Palindrómicas Cortas Agrupadas y Regularmente Espaciadas/genética , División del ADN , Reparación del ADN por Unión de Extremidades/genética , Secuencia de Bases , ADN/metabolismo , Células HEK293 , Células HeLa , Humanos , Mutación/genética , Oligonucleótidos/metabolismo , ARN Guía de Kinetoplastida/genética , Eliminación de Secuencia/genética
3.
Nat Chem Biol ; 19(3): 390, 2023 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-36797407
4.
Proc Natl Acad Sci U S A ; 114(32): 8631-8636, 2017 08 08.
Artículo en Inglés | MEDLINE | ID: mdl-28739891

RESUMEN

Amyloid-ß (Aß) is thought to play an essential pathogenic role in Alzheimer´s disease (AD). A key enzyme involved in the generation of Aß is the ß-secretase BACE, for which powerful inhibitors have been developed and are currently in use in human clinical trials. However, although BACE inhibition can reduce cerebral Aß levels, whether it also can ameliorate neural circuit and memory impairments remains unclear. Using histochemistry, in vivo Ca2+ imaging, and behavioral analyses in a mouse model of AD, we demonstrate that along with reducing prefibrillary Aß surrounding plaques, the inhibition of BACE activity can rescue neuronal hyperactivity, impaired long-range circuit function, and memory defects. The functional neuronal impairments reappeared after infusion of soluble Aß, mechanistically linking Aß pathology to neuronal and cognitive dysfunction. These data highlight the potential benefits of BACE inhibition for the effective treatment of a wide range of AD-like pathophysiological and cognitive impairments.


Asunto(s)
Enfermedad de Alzheimer/tratamiento farmacológico , Secretasas de la Proteína Precursora del Amiloide/antagonistas & inhibidores , Péptidos beta-Amiloides/metabolismo , Neuronas/metabolismo , Inhibidores de Proteasas/farmacología , Enfermedad de Alzheimer/genética , Enfermedad de Alzheimer/metabolismo , Secretasas de la Proteína Precursora del Amiloide/genética , Secretasas de la Proteína Precursora del Amiloide/metabolismo , Péptidos beta-Amiloides/genética , Animales , Modelos Animales de Enfermedad , Humanos , Ratones , Ratones Transgénicos , Neuronas/patología
5.
Nat Chem Biol ; 18(9): 920-921, 2022 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-35915258
6.
Mol Cells ; 47(7): 100086, 2024 Jun 21.
Artículo en Inglés | MEDLINE | ID: mdl-38909984

RESUMEN

Genetic engineering technologies are essential not only for basic science but also for generating animal models for therapeutic applications. The clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated protein (Cas) system, derived from adapted prokaryotic immune responses, has led to unprecedented advancements in the field of genome editing because of its ability to precisely target and edit genes in a guide RNA-dependent manner. The discovery of various types of CRISPR-Cas systems, such as CRISPR-associated transposons (CASTs), has resulted in the development of novel genome editing tools. Recently, research has expanded to systems associated with obligate mobile element guided activity (OMEGA) RNAs, including ancestral CRISPR-Cas and eukaryotic Fanzor systems, which are expected to complement the conventional CRISPR-Cas systems. In this review, we briefly introduce the features of various CRISPR-Cas systems and their application in diverse animal models.

7.
Biochem Biophys Res Commun ; 434(1): 87-94, 2013 Apr 26.
Artículo en Inglés | MEDLINE | ID: mdl-23542466

RESUMEN

Auditory fear conditioning is a well-characterized rodent learning model where a neutral auditory cue is paired with an aversive outcome to induce associative fear memory. The storage of long-term auditory fear memory requires long-term potentiation (LTP) in the lateral amygdala and de novo protein synthesis. Although many studies focused on individual proteins have shown their contribution to LTP and fear conditioning, non-biased genome-wide studies have only recently been possible with microarrays, which nevertheless fall short of measuring changes at the level of proteins. Here we employed quantitative proteomics to examine the expression of hundreds of proteins in the lateral amygdala in response to auditory fear conditioning. We found that various proteins previously implicated in LTP, learning and axon/dendrite growth were regulated by fear conditioning. A substantial number of proteins that were regulated by fear conditioning have not yet been studied specifically in learning or synaptic plasticity.


Asunto(s)
Condicionamiento Psicológico/fisiología , Miedo/fisiología , Proteómica/métodos , Estimulación Acústica , Amígdala del Cerebelo/fisiología , Animales , Masculino , Memoria a Largo Plazo/fisiología , Proteínas del Tejido Nervioso/fisiología , Mapas de Interacción de Proteínas , Ratas , Ratas Sprague-Dawley , Espectrometría de Masas en Tándem
8.
Methods Mol Biol ; 2606: 3-11, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-36592303

RESUMEN

DNA base editors, one of the CRISPR-based genome editing tools, can induce targeted point mutations at desired sites. Their superiority is based on the fact that they can perform efficient and precise gene editing without generating a DNA double-strand break (DSB) or requiring a donor DNA template. Since they were first developed, significant efforts have been made to improve DNA base editors in order to overcome problems such as off-target edits on DNA/RNA and bystander mutations in editing windows. Here, we provide an overview of DNA base editors with a summary about the history of development of DNA base editors and report on efforts to improve them.


Asunto(s)
Sistemas CRISPR-Cas , Edición Génica , Sistemas CRISPR-Cas/genética , Mutación , Mutación Puntual , ADN/genética
9.
J Neurosci ; 30(28): 9631-40, 2010 Jul 14.
Artículo en Inglés | MEDLINE | ID: mdl-20631192

RESUMEN

It is believed that memory reactivation transiently renders consolidated memory labile and that this labile or deconsolidated memory is reconsolidated in a protein synthesis-dependent manner. The synaptic correlate of memory deconsolidation upon reactivation, however, has not been fully characterized. Here, we show that 3,5-dihydroxyphenylglycine (DHPG), an agonist for group I metabotropic glutamate receptors (mGluRI), induces synaptic depotentiation only at thalamic input synapses onto the lateral amygdala (T-LA synapses) where synaptic potentiation is consolidated, but not at synapses where synaptic potentiation is not consolidated. Using this mGluRI-induced synaptic depotentiation (mGluRI-depotentiation) as a marker of consolidated synapses, we found that mGluRI-depotentiation correlated well with the state of memory deconsolidation and reconsolidation in a predictable manner. DHPG failed to induce mGluRI-depotentiation in slices prepared immediately after reactivation when the reactivated memory was deconsolidated. DHPG induced mGluRI-depotentiation 1 h after reactivation when the reactivated memory was reconsolidated, but it failed to do so when reconsolidation was blocked by a protein synthesis inhibitor. To test the memory-specificity of mGluRI-depotentiation, conditioned fear was acquired twice using two discriminative tones (2.8 and 20 kHz). Under this condition, mGluRI-depotentiation was fully impaired in slices prepared immediately after reactivation with both tones, whereas mGluRI-depotentiation was partially impaired immediately after reactivation with the 20 kHz tone. Consistently, microinjection of DHPG into the LA 1 h after reactivation reduced fear memory retention, whereas DHPG injection immediately after reactivation failed to do so. Our findings suggest that, upon memory reactivation, consolidated T-LA synapses enter a temporary labile state, displaying insensitivity to mGluRI-depotentiation.


Asunto(s)
Amígdala del Cerebelo/fisiología , Miedo/fisiología , Memoria/fisiología , Neuronas/fisiología , Sinapsis/fisiología , Tálamo/fisiología , Amígdala del Cerebelo/efectos de los fármacos , Análisis de Varianza , Animales , Condicionamiento Clásico/efectos de los fármacos , Condicionamiento Clásico/fisiología , Agonistas de Aminoácidos Excitadores/farmacología , Miedo/efectos de los fármacos , Glicina/análogos & derivados , Glicina/farmacología , Depresión Sináptica a Largo Plazo/efectos de los fármacos , Depresión Sináptica a Largo Plazo/fisiología , Masculino , Memoria/efectos de los fármacos , Vías Nerviosas/efectos de los fármacos , Vías Nerviosas/fisiología , Neuronas/efectos de los fármacos , Ratas , Ratas Sprague-Dawley , Receptores de Glutamato Metabotrópico/agonistas , Resorcinoles/farmacología , Sinapsis/efectos de los fármacos , Transmisión Sináptica/efectos de los fármacos , Transmisión Sináptica/fisiología , Tálamo/efectos de los fármacos
10.
Rev Neurosci ; 22(2): 205-29, 2011.
Artículo en Inglés | MEDLINE | ID: mdl-21476941

RESUMEN

Memories are fragile and easily forgotten at first, but after a consolidation period of hours to weeks, are inscribed in our brains as stable traces, no longer vulnerable to conventional amnesic treatments. Retrieval of a memory renders it labile, akin to the early stages of consolidation. This phenomenon has been explored as memory reactivation, in the sense that the memory is temporarily 'deconsolidated', allowing a short time window for amnesic intervention. This window closes again after reconsolidation, which restores the stability of the memory. In contrast to this 'transient deconsolidation' and the short-spanned amnesic effects of consolidation blockers, some specific treatments can disrupt even consolidated memory, leading to apparent amnesia. We propose the term 'amnesic deconsolidation' to describe such processes that lead to disruption of consolidated memory and/or consolidated memory traces. We review studies of these 'amnesic deconsolidation' treatments that enhance memory extinction, alleviate relapse, and reverse learning-induced plasticity. The transient deconsolidation that memory retrieval induces and the amnesic deconsolidation that these regimes induce both seem to dislodge a component that stabilizes consolidated memory. Characterizing this component, at both molecular and network levels, will provide a key to developing clinical treatments for memory-related disorders and to defining the consolidated memory trace.


Asunto(s)
Amnesia/fisiopatología , Extinción Psicológica/fisiología , Miedo , Recuerdo Mental/fisiología , Animales , Encéfalo/efectos de los fármacos , Encéfalo/fisiología , Factor Neurotrófico Derivado del Encéfalo/farmacología , Inhibidores Enzimáticos/farmacología , Inhibidores Enzimáticos/uso terapéutico , Extinción Psicológica/efectos de los fármacos , Humanos , Aprendizaje/efectos de los fármacos , Aprendizaje/fisiología , Potenciación a Largo Plazo/efectos de los fármacos , Recuerdo Mental/efectos de los fármacos , Metoxihidroxifenilglicol/análogos & derivados , Metoxihidroxifenilglicol/farmacología , Factores de Tiempo
11.
Comput Struct Biotechnol J ; 19: 2477-2485, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34025938

RESUMEN

Gene manipulation is a useful approach for understanding functions of genes and is important for investigating basic mechanisms of brain function on the level of single neurons and circuits. Despite the development and the wide range of applications of CRISPR-Cas9 and base editors (BEs), their implementation for an analysis of individual neurons in vivo remained limited. In fact, conventional gene manipulations are generally achieved only on the population level. Here, we combined either CRISPR-Cas9 or BEs with the targeted single-cell electroporation technique as a proof-of-concept test for gene manipulation in single neurons in vivo. Our assay consisted of CRISPR-Cas9- or BEs-induced gene knockout in single Purkinje cells in the cerebellum. Our results demonstrate the feasibility of both gene editing and base editing in single cells in the intact brain, providing a tool through which molecular perturbations of individual neurons can be used for analysis of circuits and, ultimately, behaviors.

12.
Proc Natl Acad Sci U S A ; 104(52): 20955-60, 2007 Dec 26.
Artículo en Inglés | MEDLINE | ID: mdl-18165656

RESUMEN

Auditory fear memory is thought to be maintained by fear conditioning-induced potentiation of synaptic efficacy, which involves enhanced expression of surface AMPA receptor (AMPAR) at excitatory synapses in the lateral amygdala (LA). Depotentiation, reversal of conditioning-induced potentiation, has been proposed as a cellular mechanism for fear extinction; however, a direct link between depotentiation and extinction has not yet been tested. To address this issue, we applied both ex vivo and in vivo approaches to rats in which fear memory had been consolidated. A unique form of depotentiation reversed conditioning-induced potentiation at thalamic input synapses onto the LA (T-LA synapses) ex vivo. Extinction returned the enhanced T-LA synaptic efficacy observed in conditioned rats to baseline and occluded the depotentiation. Consistently, extinction reversed conditioning-induced enhancement of surface expression of AMPAR subunits in LA synaptosomal preparations. A GluR2-derived peptide that blocks regulated AMPAR endocytosis inhibited depotentiation, and microinjection of a cell-permeable form of the peptide into the LA attenuated extinction. Our results are consistent with the use of depotentiation to weaken potentiated synaptic inputs onto the LA during extinction and provide strong evidence that AMPAR removal at excitatory synapses in the LA underlies extinction.


Asunto(s)
Amígdala del Cerebelo/anatomía & histología , Amígdala del Cerebelo/fisiología , Miedo , Animales , Encéfalo/metabolismo , Electrodos , Electrofisiología/métodos , Endocitosis , Masculino , Péptidos/química , Ratas , Ratas Sprague-Dawley , Receptores AMPA/metabolismo , Sinapsis/metabolismo , Sinaptosomas/metabolismo
13.
Exp Mol Med ; 52(7): 1016-1027, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32651459

RESUMEN

The CRISPR-Cas system has undoubtedly revolutionized the genome editing field, enabling targeted gene disruption, regulation, and recovery in a guide RNA-specific manner. In this review, we focus on currently available gene recovery strategies that use CRISPR nucleases, particularly for the treatment of genetic disorders. Through the action of DNA repair mechanisms, CRISPR-mediated DNA cleavage at a genomic target can shift the reading frame to correct abnormal frameshifts, whereas DNA cleavage at two sites, which can induce large deletions or inversions, can correct structural abnormalities in DNA. Homology-mediated or homology-independent gene recovery strategies that require donor DNAs have been developed and widely applied to precisely correct mutated sequences in genes of interest. In contrast to the DNA cleavage-mediated gene correction methods listed above, base-editing tools enable base conversion in the absence of donor DNAs. In addition, CRISPR-associated transposases have been harnessed to generate a targeted knockin, and prime editors have been developed to edit tens of nucleotides in cells. Here, we introduce currently developed gene recovery strategies and discuss the pros and cons of each.


Asunto(s)
Sistemas CRISPR-Cas/genética , Genes , ADN/genética , División del ADN , Reparación del ADN/genética , Edición Génica
14.
Sci Rep ; 10(1): 18227, 2020 10 26.
Artículo en Inglés | MEDLINE | ID: mdl-33106552

RESUMEN

The myristoylated zeta inhibitory peptide (ZIP), which was originally developed as a protein kinase C/Mζ (PKCζ/PKMζ) inhibitor, is known to produce the loss of different forms of memories. However, ZIP induces memory loss even in the absence of PKMζ, and its mechanism of action, therefore, remains elusive. Here, through a kinome-wide screen, we found that glycogen synthase kinase 3 beta (GSK-3ß) was robustly activated by ZIP in vitro. ZIP induced depotentiation (a cellular substrate of memory erasure) of conditioning-induced potentiation at LA synapses, and the ZIP-induced depotentiation was prevented by a GSK-3ß inhibitor, 6-bromoindirubin-3-acetoxime (BIO-acetoxime). Consistently, GSK-3ß inhibition by BIO-acetoxime infusion or GSK-3ß knockdown by GSK-3ß shRNA in the LA attenuated ZIP-induced disruption of learned fear. Furthermore, conditioned fear was decreased by expression of a non-inhibitable form of GSK-3ß in the LA. Our findings suggest that GSK-3ß activation is a critical step for ZIP-induced disruption of memory.


Asunto(s)
Péptidos de Penetración Celular/farmacología , Miedo/fisiología , Glucógeno Sintasa Quinasa 3 beta/metabolismo , Aprendizaje/fisiología , Lipopéptidos/farmacología , Memoria/fisiología , Proteína Quinasa C/antagonistas & inhibidores , Animales , Miedo/efectos de los fármacos , Aprendizaje/efectos de los fármacos , Masculino , Memoria/efectos de los fármacos , Modelos Animales , Fosforilación , Ratas , Ratas Sprague-Dawley , Transducción de Señal
15.
Eur J Neurosci ; 30(11): 2089-99, 2009 Dec 03.
Artículo en Inglés | MEDLINE | ID: mdl-20128847

RESUMEN

The amygdala is known to be a critical storage site of conditioned fear memory. Among the two major pathways to the lateral amygdala (LA), the cortical pathway is known to display a presynaptic long-term potentiation which is occluded with fear conditioning. Here we show that fear extinction results in a net depression of conditioning-induced potentiation at cortical input synapses onto the LA (C-LA synapses). Fear conditioning induced a significant potentiation of excitatory postsynaptic currents at C-LA synapses compared with naïve and unpaired controls, whereas extinction apparently reversed this potentiation. Paired-pulse low-frequency stimulation (pp-LFS) induced synaptic depression in the C-LA pathway of fear-conditioned rats, but not in naïve or unpaired controls, indicating that the pp-LFS-induced depression is specific to associative learning-induced changes (pp-LFS-induced depotentiation(ex vivo)). Importantly, extinction occluded pp-LFS-induced depotentiation(ex vivo), suggesting that extinction shares some mechanisms with the depotentiation. pp-LFS-induced depotentiation(ex vivo) required NMDA receptor (NMDAR) activity, consistent with a previous finding that blockade of amygdala NMDARs impaired fear extinction. In addition, pp-LFS-induced depotentiation(ex vivo) required activity of group II metabotropic glutamate receptors (mGluRs), known to be present at presynaptic terminals, but not AMPAR internalization, consistent with a presynaptic mechanism for pp-LFS-induced depotentiation(ex vivo). This result is in contrast with another form of ex vivo depotentiation in the thalamic pathway that requires both group I mGluR activity and AMPAR internalization. We thus suggest that extinction of conditioned fear involves a distinct form of depotentiation at C-LA synapses, which depends upon both NMDARs and group II mGluRs.


Asunto(s)
Amígdala del Cerebelo/fisiología , Corteza Cerebral/fisiología , Señales (Psicología) , Miedo , Depresión Sináptica a Largo Plazo/fisiología , Memoria/fisiología , Estimulación Acústica/efectos adversos , Aminoácidos/farmacología , Animales , Conducta Animal , Condicionamiento Clásico/fisiología , Estimulación Eléctrica/métodos , Endocitosis/efectos de los fármacos , Antagonistas de Aminoácidos Excitadores/farmacología , Extinción Psicológica/fisiología , Técnicas In Vitro , Depresión Sináptica a Largo Plazo/efectos de los fármacos , Masculino , Memoria/efectos de los fármacos , Metoxihidroxifenilglicol/análogos & derivados , Metoxihidroxifenilglicol/farmacología , Técnicas de Placa-Clamp/métodos , Péptidos/farmacología , Ratas , Ratas Sprague-Dawley , Estadísticas no Paramétricas , Xantenos/farmacología
16.
Sci Rep ; 6: 31069, 2016 08 04.
Artículo en Inglés | MEDLINE | ID: mdl-27488731

RESUMEN

Various auditory tones have been used as conditioned stimuli (CS) for fear conditioning, but researchers have largely neglected the effect that different types of auditory tones may have on fear memory processing. Here, we report that at lateral amygdala (LA) synapses (a storage site for fear memory), conditioning with different types of auditory CSs (2.8 kHz tone, white noise, FM tone) recruits distinct forms of long-term potentiation (LTP) and inserts calcium permeable AMPA receptor (CP-AMPAR) for variable periods. White noise or FM tone conditioning produced brief insertion (<6 hr after conditioning) of CP-AMPARs, whereas 2.8 kHz tone conditioning induced more persistent insertion (≥6 hr). Consistently, conditioned fear to 2.8 kHz tone but not to white noise or FM tones was erased by reconsolidation-update (which depends on the insertion of CP-AMPARs at LA synapses) when it was performed 6 hr after conditioning. Our data suggest that conditioning with different auditory CSs recruits distinct forms of LA synaptic plasticity, resulting in more malleable fear memory to some tones than to others.


Asunto(s)
Amígdala del Cerebelo/fisiología , Miedo/fisiología , Estimulación Acústica , Animales , Condicionamiento Psicológico , Técnicas In Vitro , Potenciación a Largo Plazo , Masculino , Plasticidad Neuronal , Técnicas de Placa-Clamp , Ratas , Ratas Sprague-Dawley , Receptores AMPA/metabolismo , Sonido
17.
Nat Neurosci ; 18(12): 1725-7, 2015 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-26551546

RESUMEN

Among the most promising approaches for treating Alzheimer's disease is immunotherapy with amyloid-ß (Aß)-targeting antibodies. Using in vivo two-photon imaging in mouse models, we found that two different antibodies to Aß used for treatment were ineffective at repairing neuronal dysfunction and caused an increase in cortical hyperactivity. This unexpected finding provides a possible cellular explanation for the lack of cognitive improvement by immunotherapy in human studies.


Asunto(s)
Enfermedad de Alzheimer/inmunología , Enfermedad de Alzheimer/terapia , Péptidos beta-Amiloides/inmunología , Inmunoterapia/métodos , Neuronas/inmunología , Enfermedad de Alzheimer/metabolismo , Péptidos beta-Amiloides/metabolismo , Animales , Femenino , Humanos , Ratones , Ratones Transgénicos , Neuronas/metabolismo
18.
Front Behav Neurosci ; 8: 269, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-25152720

RESUMEN

There is conflicting evidence regarding whether calcium-permeable receptors are removed during group I mGluR-mediated synaptic depression. In support of this hypothesis, AMPAR rectification, a correlative index of the synaptic expression of GluA2-lacking calcium-permeable AMPARs (CP-AMPARs), is known to decrease after the induction of several types of group I mGluR-mediated long-term depression (LTD), suggesting that a significant proportion of synaptic CP-AMPARs is removed during synaptic depression. We have previously demonstrated that fear conditioning-induced synaptic potentiation in the lateral amygdala is reversed by group 1 mGluR-mediated depotentiation. Here, we examined whether CP-AMPARs are removed by mGluR1-mediated depotentiation of fear conditioning-induced synaptic potentiation. The synaptic expression of CP-AMPARs was negligible before, increased significantly 12 h after, and returned to baseline 48 h after fear conditioning, as evidenced by the changes in the sensitivity of lateral amygdala synaptic responses to NASPM. Importantly, the sensitivity to NASPM was not altered after induction of depotentiation. Our findings, together with previous results, suggest that the removal of CP-AMPARs is not required for the depotentiation of fear conditioning-induced synaptic potentiation at lateral amygdala synapses.

19.
PLoS One ; 9(6): e100108, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-24925360

RESUMEN

Fear renewal, the context-specific relapse of fear following fear extinction, is a leading animal model of post-traumatic stress disorders (PTSD) and fear-related disorders. Although fear extinction can diminish fear responses, this effect is restricted to the context where the extinction is carried out, and the extinguished fear strongly relapses when assessed in the original acquisition context (ABA renewal) or in a context distinct from the conditioning and extinction contexts (ABC renewal). We have previously identified Ser831 phosphorylation of GluA1 subunit in the lateral amygdala (LA) as a key molecular mechanism for ABC renewal. However, molecular mechanisms underlying ABA renewal remain to be elucidated. Here, we found that both the excitatory synaptic efficacy and GluA2-lacking AMPAR activity at thalamic input synapses onto the LA (T-LA synapses) were enhanced upon ABA renewal. GluA2-lacking AMPAR activity was also increased during low-threshold potentiation, a potential cellular substrate of renewal, at T-LA synapses. The microinjection of 1-naphtylacetyl-spermine (NASPM), a selective blocker of GluA2-lacking AMPARs, into the LA attenuated ABA renewal, suggesting a critical role of GluA2-lacking AMPARs in ABA renewal. We also found that Ser831 phosphorylation of GluA1 in the LA was increased upon ABA renewal. We developed a short peptide mimicking the Ser831-containing C-tail region of GluA1, which can be phosphorylated upon renewal (GluA1S); thus, the phosphorylated GluA1S may compete with Ser831-phosphorylated GluA1. This GluA1S peptide blocked the low-threshold potentiation when dialyzed into a recorded neuron. The microinjection of a cell-permeable form of GluA1S peptide into the LA attenuated ABA renewal. In support of the GluA1S experiments, a GluA1D peptide (in which the serine at 831 is replaced with a phosphomimetic amino acid, aspartate) attenuated ABA renewal when microinjected into the LA. These findings suggest that enhancements in both the GluA2-lacking AMPAR activity and GluA1 phosphorylation at Ser831 are required for ABA renewal.


Asunto(s)
Amígdala del Cerebelo/metabolismo , Receptores AMPA/metabolismo , Estrés Psicológico/metabolismo , Animales , Condicionamiento Clásico , Miedo , Masculino , Fosforilación , Ratas , Ratas Sprague-Dawley , Receptores AMPA/antagonistas & inhibidores , Receptores AMPA/genética , Estrés Psicológico/fisiopatología
20.
Nat Neurosci ; 16(10): 1436-44, 2013 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-23974710

RESUMEN

Fear renewal, a widely pursued model of post-traumatic stress disorder and phobias, refers to the context-specific relapse of conditioned fear after extinction. However, its molecular mechanisms are largely unknown. We found that renewal-inducing stimuli, generally believed to be insufficient to induce synaptic plasticity, enhanced excitatory synaptic strength, activity of synaptic GluA2-lacking AMPA receptors and Ser831 phosphorylation of synaptic surface GluA1 in the lateral nucleus of the amygdala (LAn) of fear-extinguished rats. Consistently, the induction threshold for LAn synaptic potentiation was considerably lowered after extinction, and renewal occluded this low-threshold potentiation. The low-threshold potentiation (a potential cellular substrate for renewal), but not long-term potentiation, was attenuated by dialysis into LAn neurons of a GluA1-derived peptide that competes with Ser831-phosphorylated GluA1. Microinjections of the same peptide into the LAn attenuated fear renewal, but not fear learning. Our findings suggest that GluA1 phosphorylation constitutes a promising target for clinical treatment of aberrant fear-related disorders.


Asunto(s)
Amígdala del Cerebelo/metabolismo , Condicionamiento Psicológico/fisiología , Miedo/fisiología , Receptores AMPA/metabolismo , Serina/metabolismo , Animales , Miedo/psicología , Masculino , Técnicas de Cultivo de Órganos , Fosforilación/fisiología , Ratas , Ratas Sprague-Dawley , Receptores AMPA/genética , Serina/genética
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