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1.
PLoS Genet ; 16(2): e1008609, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-32097408

RESUMO

Neuromodulators such as monoamines are often expressed in neurons that also release at least one fast-acting neurotransmitter. The release of a combination of transmitters provides both "classical" and "modulatory" signals that could produce diverse and/or complementary effects in associated circuits. Here, we establish that the majority of Drosophila octopamine (OA) neurons are also glutamatergic and identify the individual contributions of each neurotransmitter on sex-specific behaviors. Males without OA display low levels of aggression and high levels of inter-male courtship. Males deficient for dVGLUT solely in OA-glutamate neurons (OGNs) also exhibit a reduction in aggression, but without a concurrent increase in inter-male courtship. Within OGNs, a portion of VMAT and dVGLUT puncta differ in localization suggesting spatial differences in OA signaling. Our findings establish a previously undetermined role for dVGLUT in OA neurons and suggests that glutamate uncouples aggression from OA-dependent courtship-related behavior. These results indicate that dual neurotransmission can increase the efficacy of individual neurotransmitters while maintaining unique functions within a multi-functional social behavior neuronal network.


Assuntos
Agressão , Proteínas de Drosophila/genética , Drosophila melanogaster/fisiologia , Neurônios/metabolismo , Transmissão Sináptica/genética , Proteínas Vesiculares de Transporte de Glutamato/genética , Animais , Animais Geneticamente Modificados , Comportamento Animal , Corte , Proteínas de Drosophila/metabolismo , Feminino , Ácido Glutâmico/metabolismo , Masculino , Octopamina/metabolismo , Fatores Sexuais , Transdução de Sinais/genética , Vesículas Sinápticas/metabolismo , Proteínas Vesiculares de Transporte de Glutamato/metabolismo , Proteínas Vesiculares de Transporte de Monoamina/metabolismo
2.
G3 (Bethesda) ; 9(3): 737-748, 2019 03 07.
Artigo em Inglês | MEDLINE | ID: mdl-30635441

RESUMO

The release of neurotransmitters from synaptic vesicles (SVs) at pre-synaptic release sites is the principle means by which information transfer between neurons occurs. Knowledge of the location of SVs within a neuron can thus provide valuable clues about the location of neurotransmitter release within a neuron and the downstream neurons to which a given neuron is connected, important information for understanding how neural circuits generate behavior. Here the development and characterization of four conditional tagged SV markers for Drosophila melanogaster is presented. This characterization includes evaluation of conditionality, specificity for SV localization, and sensitivity of detection in diverse neuron subtypes. These four SV markers are genome-edited variants of the synaptic vesicle-specific protein Rab3. They depend on either the B2 or FLP recombinases for conditionality, and incorporate GFP or mCherry fluorescent proteins, or FLAG or HA epitope tags, for detection.


Assuntos
Drosophila melanogaster/fisiologia , Proteínas Luminescentes/análise , Neurônios/fisiologia , Transmissão Sináptica , Vesículas Sinápticas , Animais , Biomarcadores/análise , Drosophila melanogaster/ultraestrutura , Neurônios/ultraestrutura , Sensibilidade e Especificidade
3.
J Neurosci Methods ; 306: 94-102, 2018 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-29792886

RESUMO

BACKGROUND: Understanding how behaviors are generated by neural circuits requires knowledge of the synaptic connections between the composite neurons. Methods for mapping synaptic connections, such as electron microscopy and paired recordings, are labor intensive and alternative methods are thus desirable. NEW METHOD: Development of a targeted GFP Reconstitution Across Synaptic Partners(GRASP) method, t-GRASP, for assessing neural connectivity is described. RESULTS: Numerous different pre-synaptic and post-synaptic/dendritic proteins were tested for enhancing the specificity of GRASP signal to synaptic regions. Pairing of both targeted pre- and post-t-GRASP constructs resulted in strong preferential GRASP signal in synaptic regions in Drosophila larval sensory neurons, larval neuromuscular junctions, and adult photoreceptor neurons with minimal false-positive signal. COMPARISON WITH EXISTING METHODS: Activity-independent t-GRASP exhibits an enhancement of GRASP signal specificity for synaptic contact sites as compared to existing Drosophila GRASP methods. Fly strains were developed for expression of both pre- and post-t-GRASP with each of the three Drosophila binary transcription systems, thus enabling GRASP assays to be performed between any two driver pairs of any transcription system in either direction, an option not available for existing Drosophila GRASP methods. CONCLUSIONS: t-GRASP is a novel targeted GRASP method for assessing synaptic connectivity between Drosophila neurons. Its flexibility of use with all three Drosophila binary transcription systems significantly expands the potential use of GRASP in Drosophila.


Assuntos
Proteínas de Fluorescência Verde/metabolismo , Microscopia Confocal/métodos , Células Receptoras Sensoriais/citologia , Sinapses , Animais , Animais Geneticamente Modificados , Drosophila , Proteínas de Fluorescência Verde/genética , Neuroglia/citologia , Terminações Pré-Sinápticas
4.
J Virol ; 88(15): 8640-55, 2014 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-24850738

RESUMO

UNLABELLED: Natural transmission of prion diseases depends upon the spread of prions from the nervous system to excretory or secretory tissues, but the mechanism of prion transport in axons and into peripheral tissue is unresolved. Here, we examined the temporal and spatial movement of prions from the brain stem along cranial nerves into skeletal muscle as a model of axonal transport and transynaptic spread. The disease-specific isoform of the prion protein, PrP(Sc), was observed in nerve fibers of the tongue approximately 2 weeks prior to PrP(Sc) deposition in skeletal muscle. Initially, PrP(Sc) deposits had a small punctate pattern on the edge of muscle cells that colocalized with synaptophysin, a marker for the neuromuscular junction (NMJ), in >50% of the cells. At later time points PrP(Sc) was widely distributed in muscle cells, but <10% of prion-infected cells exhibited PrP(Sc) deposition at the NMJ, suggesting additional prion replication and dissemination within muscle cells. In contrast to the NMJ, PrP(Sc) was not associated with synaptophysin in nerve fibers but was found to colocalize with LAMP-1 and cathepsin D during early stages of axonal spread. We propose that PrP(Sc)-bound endosomes can lead to membrane recycling in which PrP(Sc) is directed to the synapse, where it either moves across the NMJ into the postsynaptic muscle cell or induces PrP(Sc) formation on muscle cells across the NMJ. IMPORTANCE: Prion diseases are transmissible and fatal neurodegenerative diseases in which prion dissemination to excretory or secretory tissues is necessary for natural disease transmission. Despite the importance of this pathway, the cellular mechanism of prion transport in axons and into peripheral tissue is unresolved. This study demonstrates anterograde spread of prions within nerve fibers prior to infection of peripheral synapses (i.e., neuromuscular junction) and infection of peripheral tissues (i.e., muscle cells). Within nerve fibers prions were associated with the endosomal-lysosomal pathway prior to entry into muscle cells. Since early prion spread is anterograde and endosome-lysosomal movement within axons is primarily retrograde, these findings suggest that endosome-bound prions may have an alternate fate that directs prions to the peripheral synapse.


Assuntos
Axônios/metabolismo , Príons/metabolismo , Transporte Proteico , Sinapses/metabolismo , Animais , Química Encefálica , Nervos Cranianos/química , Mesocricetus , Músculo Esquelético/química , Fatores de Tempo
5.
Genetics ; 196(4): 951-60, 2014 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-24451596

RESUMO

The ability to distinguish cells and tissues of interest is critical for understanding their biological importance. In genetic model organisms, a prominent approach for discerning particular cells or tissues from others is the use of cell or tissue-specific enhancers to drive fluorescent reporters. This approach, however, is often limited by the brightness of the fluorescent reporter. To augment the ability to visualize cells or tissues of interest in Drosophila melanogaster, homo-hexameric GFP and mCherry reporters were developed for the GAL4, Q, and LexA transcription systems and functionally validated in vivo. The GFP and mCherry homo-hexameric fusion proteins exhibited significantly enhanced fluorescence as compared to monomeric fluorescent reporters and could be visualized by direct fluorescence throughout the cytoplasm of neurons, including the fine processes of axons and dendrites. These high-sensitivity fluorescent reporters of cell morphology can be utilized for a variety of purposes, especially facilitating fluorescence-based genetic screens for cell morphology phenotypes. These results suggest that the strategy of fusing monomeric fluorescent proteins in tandem to enhance brightness should be generalizable to other fluorescent proteins and other genetic model organisms.


Assuntos
Clonagem Molecular/métodos , Drosophila melanogaster/genética , Proteínas Luminescentes/genética , Proteínas Luminescentes/metabolismo , Proteínas Recombinantes de Fusão/análise , Animais , Animais Geneticamente Modificados , Axônios/ultraestrutura , Dendritos/ultraestrutura , Proteínas de Drosophila/genética , Proteínas de Drosophila/metabolismo , Drosophila melanogaster/metabolismo , Proteínas Recombinantes de Fusão/genética , Proteínas Recombinantes de Fusão/metabolismo , Reprodutibilidade dos Testes , Sequências de Repetição em Tandem , Fatores de Transcrição/genética , Fatores de Transcrição/metabolismo
6.
PLoS One ; 8(10): e77724, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24204935

RESUMO

Precise manipulation of transgene expression in genetic model organisms has led to advances in understanding fundamental mechanisms of development, physiology, and genetic disease. Transgene construction is, however, a precondition of transgene expression, and often limits the rate of experimental progress. Here we report an expansion of the modular Gateway MultiSite recombination-cloning platform for high efficiency transgene assembly. The expansion includes two additional destination vectors and entry clones for the LexA binary transcription system, among others. These new tools enhance the expression levels possible with Gateway MultiSite generated transgenes and make possible the generation of LexA drivers and reporters with Gateway MultiSite cloning. In vivo data from transgenic Drosophila functionally validating each novel component are presented and include neuronal LexA drivers, LexAop2 red and green fluorescent synaptic vesicle reporters, TDC2 and TRH LexA, GAL4, and QF drivers, and LexAop2, UAS, and QUAS channelrhodopsin2 T159C reporters.


Assuntos
Clonagem Molecular/métodos , Clonagem de Organismos/métodos , Animais , DNA Recombinante/genética , Drosophila/genética , Vetores Genéticos/genética , Recombinação Genética/genética , Transgenes/genética
7.
J Virol ; 86(3): 1777-88, 2012 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22130543

RESUMO

In this study, we investigated the role of damage to the nasal mucosa in the shedding of prions into nasal samples as a pathway for prion transmission. Here, we demonstrate that prions can replicate to high levels in the olfactory sensory epithelium (OSE) in hamsters and that induction of apoptosis in olfactory receptor neurons (ORNs) in the OSE resulted in sloughing off of the OSE from nasal turbinates into the lumen of the nasal airway. In the absence of nasotoxic treatment, olfactory marker protein (OMP), which is specific for ORNs, was not detected in nasal lavage samples. However, after nasotoxic treatment that leads to apoptosis of ORNs, both OMP and prion proteins were present in nasal lavage samples. The cellular debris that was released from the OSE into the lumen of the nasal airway was positive for both OMP and the disease-specific isoform of the prion protein, PrP(Sc). By using the real-time quaking-induced conversion assay to quantify prions, a 100- to 1,000-fold increase in prion seeding activity was observed in nasal lavage samples following nasotoxic treatment. Since neurons replicate prions to higher levels than other cell types and ORNs are the most environmentally exposed neurons, we propose that an increase in ORN apoptosis or damage to the nasal mucosa in a host with a preexisting prion infection of the OSE could lead to a substantial increase in the release of prion infectivity into nasal samples. This mechanism of prion shedding from the olfactory mucosa could contribute to prion transmission.


Assuntos
Mucosa Olfatória/patologia , Príons/metabolismo , Animais , Humanos
8.
PLoS One ; 6(12): e28026, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-22174765

RESUMO

Chronic wasting disease (CWD) is an emerging prion disease of free-ranging and captive cervids in North America. In this study we established a rodent model for CWD in Syrian golden hamsters that resemble key features of the disease in cervids including cachexia and infection of cardiac muscle. Following one to three serial passages of CWD from white-tailed deer into transgenic mice expressing the hamster prion protein gene, CWD was subsequently passaged into Syrian golden hamsters. In one passage line there were preclinical changes in locomotor activity and a loss of body mass prior to onset of subtle neurological symptoms around 340 days. The clinical symptoms included a prominent wasting disease, similar to cachexia, with a prolonged duration. Other features of CWD in hamsters that were similar to cervid CWD included the brain distribution of the disease-specific isoform of the prion protein, PrP(Sc), prion infection of the central and peripheral neuroendocrine system, and PrP(Sc) deposition in cardiac muscle. There was also prominent PrP(Sc) deposition in the nasal mucosa on the edge of the olfactory sensory epithelium with the lumen of the nasal airway that could have implications for CWD shedding into nasal secretions and disease transmission. Since the mechanism of wasting disease in prion diseases is unknown this hamster CWD model could provide a means to investigate the physiological basis of cachexia, which we propose is due to a prion-induced endocrinopathy. This prion disease phenotype has not been described in hamsters and we designate it as the 'wasting' or WST strain of hamster CWD.


Assuntos
Caquexia/complicações , Miocárdio/patologia , Proteínas PrPSc/metabolismo , Doença de Emaciação Crônica/complicações , Doença de Emaciação Crônica/transmissão , Animais , Comportamento Animal , Western Blotting , Peso Corporal , Encéfalo/metabolismo , Encéfalo/patologia , Caquexia/patologia , Cricetinae , Epitélio/metabolismo , Epitélio/patologia , Comportamento Alimentar , Imuno-Histoquímica , Camundongos , Camundongos Transgênicos , Cavidade Nasal/metabolismo , Cavidade Nasal/patologia , Bulbo Olfatório/metabolismo , Bulbo Olfatório/patologia , Fatores de Tempo
9.
PLoS Pathog ; 6(4): e1000837, 2010 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-20419120

RESUMO

This study investigated the role of prion infection of the olfactory mucosa in the shedding of prion infectivity into nasal secretions. Prion infection with the HY strain of the transmissible mink encephalopathy (TME) agent resulted in a prominent infection of the olfactory bulb and the olfactory sensory epithelium including the olfactory receptor neurons (ORNs) and vomeronasal receptor neurons (VRNs), whose axons comprise the two olfactory cranial nerves. A distinct glycoform of the disease-specific isoform of the prion protein, PrP(Sc), was found in the olfactory mucosa compared to the olfactory bulb, but the total amount of HY TME infectivity in the nasal turbinates was within 100-fold of the titer in the olfactory bulb. PrP(Sc) co-localized with olfactory marker protein in the soma and dendrites of ORNs and VRNs and also with adenylyl cyclase III, which is present in the sensory cilia of ORNs that project into the lumen of the nasal airway. Nasal lavages from HY TME-infected hamsters contained prion titers as high as 10(3.9) median lethal doses per ml, which would be up to 500-fold more infectious in undiluted nasal fluids. These findings were confirmed using the rapid PrP(Sc) amplification QuIC assay, indicating that nasal swabs have the potential to be used for prion diagnostics. These studies demonstrate that prion infection in the olfactory epithelium is likely due to retrograde spread from the olfactory bulb along the olfactory and vomeronasal axons to the soma, dendrites, and cilia of these peripheral neurons. Since prions can replicate to high levels in neurons, we propose that ORNs can release prion infectivity into nasal fluids. The continual turnover and replacement of mature ORNs throughout the adult lifespan may also contribute to prion shedding from the nasal passage and could play a role in transmission of natural prion diseases in domestic and free-ranging ruminants.


Assuntos
Neurônios/metabolismo , Mucosa Olfatória/metabolismo , Proteínas PrPSc/metabolismo , Doenças Priônicas/metabolismo , Doenças Priônicas/transmissão , Animais , Western Blotting , Secreções Corporais/metabolismo , Tronco Encefálico/metabolismo , Cricetinae , Imunofluorescência , Imuno-Histoquímica , Mesocricetus , Microscopia Confocal , Lavagem Nasal , Líquido da Lavagem Nasal/química , Bulbo Olfatório/metabolismo , Nervo Olfatório/metabolismo
10.
Nat Neurosci ; 9(1): 76-84, 2006 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-16341215

RESUMO

Peripheral nerve development results from multiple cellular interactions between axons, Schwann cells and the surrounding mesenchymal tissue. The delayed axonal sorting and hypomyelination throughout the peripheral nervous system of claw paw (clp) mutant mice suggest that the clp gene product is critical for these interactions. Here we identify the clp mutation as a 225-bp insertion in the Lgi4 gene. Lgi4 encodes a secreted and glycosylated leucine-rich repeat protein and is expressed in Schwann cells. The clp mutation affects Lgi4 mRNA splicing, resulting in a mutant protein that is retained in the cell. Additionally, siRNA-mediated downregulation of Lgi4 in wild-type neuron-Schwann cell cocultures inhibits myelination, whereas exogenous Lgi4 restores myelination in clp/clp cultures. Thus, the abnormalities observed in clp mice are attributable to the loss of Lgi4 function, and they identify Lgi4 as a new component of Schwann cell signaling pathway(s) that controls axon segregation and myelin formation.


Assuntos
Deformidades do Pé/genética , Mutação/fisiologia , Sistema Nervoso Periférico/crescimento & desenvolvimento , Sistema Nervoso Periférico/fisiologia , Proteínas/fisiologia , Sequência de Aminoácidos , Animais , Axônios/fisiologia , Sequência de Bases , Clonagem Molecular , Técnicas de Cocultura , Elementos de DNA Transponíveis , DNA Complementar/biossíntese , DNA Complementar/genética , Regulação para Baixo/genética , Regulação para Baixo/fisiologia , Regulação da Expressão Gênica/genética , Regulação da Expressão Gênica/fisiologia , Teste de Complementação Genética , Genótipo , Imuno-Histoquímica , Hibridização In Situ , Lentivirus/genética , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Dados de Sequência Molecular , Bainha de Mielina/fisiologia , Proteínas do Tecido Nervoso , Neurônios Aferentes/fisiologia , Fenótipo , Proteínas/genética , RNA Interferente Pequeno/genética , Ratos , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Células de Schwann/fisiologia , Transfecção
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