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1.
RNA ; 25(10): 1353-1365, 2019 10.
Artículo en Inglés | MEDLINE | ID: mdl-31292260

RESUMEN

Alternative splicing of pre-mRNA is a major mechanism to diversify protein functionality in metazoans from a limited number of genes. The Drosophila melanogaster Down syndrome cell adhesion molecule (Dscam) gene, which is important for neuronal wiring and phagocytosis of bacteria, can generate up to 38,016 isoforms by mutually exclusive alternative splicing in four clusters of variable exons. However, it is not understood how a specific exon is chosen from the many variables and how variable exons are prevented from being spliced together. A main role in the regulation of Dscam alternative splicing has been attributed to RNA binding proteins (RBPs), but how they impact on exon selection is not well understood. Serine-arginine rich (SR) proteins and hnRNP proteins are the two main types of RBPs with major roles in exon definition and splice site selection. Here, we analyzed the role of SR and hnRNP proteins in Dscam exon 9 alternative splicing in mutant Drosophila melanogaster embryos because of their essential function for development. Strikingly, loss or overexpression of canonical SR and hnRNP proteins even when multiple proteins are depleted together, does not affect Dscam alternative exon selection very dramatically. Conversely, noncanonical SR protein Serine-arginine repetitive matrix 2/3/4 (Srrm234) is a main determinant of exon inclusion in the Dscam exon 9 cluster. Since long-range base-pairings are absent in the exon 9 cluster, our data argue for a small complement of regulatory factors as main determinants of exon inclusion in the Dscam exon 9 cluster.


Asunto(s)
Moléculas de Adhesión Celular/metabolismo , Proteínas de Drosophila/metabolismo , Exones , Ribonucleoproteínas Nucleares Heterogéneas/metabolismo , Proteínas de Unión al ARN/metabolismo , Empalme Alternativo , Animales , Drosophila melanogaster
2.
Nucleic Acids Res ; 47(3): 1389-1403, 2019 02 20.
Artículo en Inglés | MEDLINE | ID: mdl-30541104

RESUMEN

Alternative splicing is a key feature of human genes, yet studying its regulation is often complicated by large introns. The Down Syndrome Cell Adhesion Molecule (Dscam) gene from Drosophila is one of the most complex genes generating vast molecular diversity by mutually exclusive alternative splicing. To resolve how alternative splicing in Dscam is regulated, we first developed plasmid-based UAS reporter genes for the Dscam variable exon 4 cluster and show that its alternative splicing is recapitulated by GAL4-mediated expression in neurons. We then developed gap-repair recombineering to very efficiently manipulate these large reporter plasmids in Escherichia coli using restriction enzymes or sgRNA/Cas9 DNA scission to capitalize on the many benefits of plasmids in phiC31 integrase-mediated transgenesis. Using these novel tools, we show that inclusion of Dscam exon 4 variables differs little in development and individual flies, and is robustly determined by sequences harbored in variable exons. We further show that introns drive selection of both proximal and distal variable exons. Since exon 4 cluster introns lack conserved sequences that could mediate robust long-range base-pairing to bring exons into proximity for splicing, our data argue for a central role of introns in mutually exclusive alternative splicing of Dscam exon 4 cluster.


Asunto(s)
Empalme Alternativo/genética , Moléculas de Adhesión Celular/genética , Proteínas de Drosophila/genética , Factores de Transcripción/genética , Animales , Secuencia Conservada , Síndrome de Down/genética , Drosophila melanogaster/genética , Escherichia coli/genética , Exones/genética , Expresión Génica/genética , Técnicas de Transferencia de Gen , Humanos , Intrones/genética , Neuronas/metabolismo , Neuronas/patología , Empalme del ARN/genética
3.
Front Mol Neurosci ; 16: 1322808, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-38264345

RESUMEN

Down syndrome cell adhesion molecule (Dscam) gene encodes a cell adhesion molecule required for neuronal wiring. A remarkable feature of arthropod Dscam is massive alternative splicing generating thousands of different isoforms from three variable clusters of alternative exons. Dscam expression and diversity arising from alternative splicing have been studied during development, but whether they exert functions in adult brains has not been determined. Here, using honey bees, we find that Dscam expression is critically linked to memory retention as reducing expression by RNAi enhances memory after reward learning in adult worker honey bees. Moreover, alternative splicing of Dscam is altered in all three variable clusters after learning. Since identical Dscam isoforms engage in homophilic interactions, these results suggest a mechanism to alter inclusion of variable exons during memory consolidation to modify neuronal connections for memory retention.

4.
Sci Rep ; 11(1): 1489, 2021 01 15.
Artículo en Inglés | MEDLINE | ID: mdl-33452318

RESUMEN

Maximizing crop yields relies on the use of agrochemicals to control insect pests. One of the most widely used classes of insecticides are neonicotinoids that interfere with signalling of the neurotransmitter acetylcholine, but these can also disrupt crop-pollination services provided by bees. Here, we analysed whether chronic low dose long-term exposure to the neonicotinoid thiamethoxam alters gene expression and alternative splicing in brains of Africanized honey bees, Apis mellifera, as adaptation to altered neuronal signalling. We find differentially regulated genes that show concentration-dependent responses to thiamethoxam, but no changes in alternative splicing. Most differentially expressed genes have no annotated function but encode short Open Reading Frames, a characteristic feature of anti-microbial peptides. As this suggested that immune responses may be compromised by thiamethoxam exposure, we tested the impact of thiamethoxam on bee immunity by injecting bacteria. We show that intrinsically sub-lethal thiamethoxam exposure makes bees more vulnerable to normally non-pathogenic bacteria. Our findings imply a synergistic mechanism for the observed bee population declines that concern agriculturists, conservation ecologists and the public.


Asunto(s)
Abejas/metabolismo , Expresión Génica/efectos de los fármacos , Tiametoxam/efectos adversos , Animales , Infecciones Bacterianas/genética , Abejas/efectos de los fármacos , Abejas/genética , Expresión Génica/genética , Regulación de la Expresión Génica/efectos de los fármacos , Inmunidad/inmunología , Insecticidas/efectos adversos , Neonicotinoides/efectos adversos , Sistemas de Lectura Abierta/genética , Polinización , Tiazoles/efectos adversos
5.
Commun Biol ; 4(1): 1234, 2021 10 28.
Artículo en Inglés | MEDLINE | ID: mdl-34711922

RESUMEN

Changes in gene expression are a hallmark of learning and memory consolidation. Little is known about how alternative mRNA processing, particularly abundant in neuron-specific genes, contributes to these processes. Prototype RNA binding proteins of the neuronally expressed ELAV/Hu family are candidates for roles in learning and memory, but their capacity to cross-regulate and take over each other's functions complicate substantiation of such links. Honey bees Apis mellifera have only one elav/Hu family gene elavl2, that has functionally diversified by increasing alternative splicing including an evolutionary conserved microexon. RNAi knockdown demonstrates that ELAVL2 is required for learning and memory in bees. ELAVL2 is dynamically expressed with altered alternative splicing and subcellular localization in mushroom bodies, but not in other brain regions. Expression and alternative splicing of elavl2 change during memory consolidation illustrating an alternative mRNA processing program as part of a local gene expression response underlying memory consolidation.


Asunto(s)
Abejas/genética , Expresión Génica , Proteínas de Insectos/genética , Proteínas de Unión al ARN/genética , Empalme Alternativo , Animales , Proteínas de Insectos/metabolismo , Aprendizaje , Memoria , Proteínas de Unión al ARN/metabolismo
6.
Elife ; 92020 01 20.
Artículo en Inglés | MEDLINE | ID: mdl-31944178

RESUMEN

Unpaired ligands are secreted signals that act via a GP130-like receptor, domeless, to activate JAK/STAT signalling in Drosophila. Like many mammalian cytokines, unpaireds can be activated by infection and other stresses and can promote insulin resistance in target tissues. However, the importance of this effect in non-inflammatory physiology is unknown. Here, we identify a requirement for unpaired-JAK signalling as a metabolic regulator in healthy adult Drosophila muscle. Adult muscles show basal JAK-STAT signalling activity in the absence of any immune challenge. Plasmatocytes (Drosophila macrophages) are an important source of this tonic signal. Loss of the dome receptor on adult muscles significantly reduces lifespan and causes local and systemic metabolic pathology. These pathologies result from hyperactivation of AKT and consequent deregulation of metabolism. Thus, we identify a cytokine signal that must be received in muscle to control AKT activity and metabolic homeostasis.


Asunto(s)
Citocinas/metabolismo , Proteínas de Drosophila , Músculos/metabolismo , Proteínas Proto-Oncogénicas c-akt , Receptores de Interleucina , Transducción de Señal/genética , Animales , Animales Modificados Genéticamente , Drosophila/genética , Drosophila/metabolismo , Proteínas de Drosophila/genética , Proteínas de Drosophila/metabolismo , Homeostasis , Quinasas Janus/genética , Quinasas Janus/metabolismo , Masculino , Proteínas Proto-Oncogénicas c-akt/antagonistas & inhibidores , Proteínas Proto-Oncogénicas c-akt/metabolismo , Receptores de Interleucina/genética , Receptores de Interleucina/metabolismo , Factores de Transcripción STAT/genética , Factores de Transcripción STAT/metabolismo
7.
Sci Rep ; 9(1): 19196, 2019 12 16.
Artículo en Inglés | MEDLINE | ID: mdl-31844097

RESUMEN

Securing food supply for a growing population is a major challenge and heavily relies on the use of agrochemicals to maximize crop yield. It is increasingly recognized, that some neonicotinoid insecticides have a negative impact on non-target organisms, including important pollinators such as the European honeybee Apis mellifera. Toxicity of neonicotinoids may be enhanced through simultaneous exposure with additional pesticides, which could help explain, in part, the global decline of honeybee colonies. Here we examined whether exposure effects of the neonicotinoid thiamethoxam on bee viability are enhanced by the commonly used fungicide carbendazim and the herbicide glyphosate. We also analysed alternative splicing changes upon pesticide exposure in the honeybee. In particular, we examined transcripts of three genes: (i) the stress sensor gene X box binding protein-1 (Xbp1), (ii) the Down Syndrome Cell Adhesion Molecule (Dscam) gene and iii) the embryonic lethal/abnormal visual system (elav) gene, which are important for neuronal function. Our results showed that acute thiamethoxam exposure is not enhanced by carbendazim, nor glyphosate. Toxicity of the compounds did not trigger stress-induced, alternative splicing in the analysed mRNAs, thereby leaving dormant a cellular response pathway to these man-made environmental perturbations.


Asunto(s)
Empalme Alternativo/efectos de los fármacos , Abejas/efectos de los fármacos , Fungicidas Industriales/toxicidad , Herbicidas/toxicidad , ARN Mensajero/genética , Tiametoxam/toxicidad , Animales , Abejas/genética , Bencimidazoles/toxicidad , Carbamatos/toxicidad , Glicina/análogos & derivados , Glicina/toxicidad , Glifosato
8.
Photochem Photobiol ; 93(1): 93-103, 2017 01.
Artículo en Inglés | MEDLINE | ID: mdl-28067410

RESUMEN

Light is a very important environmental factor that governs many cellular responses in organisms. As a consequence, organisms possess different kinds of light-sensing photoreceptors to regulate their physiological variables and adapt to a given habitat. The cryptochrome/photolyase family (CPF) includes photoreceptors that perform different functions in different organisms. Photolyases repair ultraviolet-induced DNA damage by a process known as photoreactivation using photons absorbed from the blue end of the light spectrum. On the other hand, cryptochromes act as blue light circadian photoreceptors in plants and Drosophila to regulate growth and development. In mammals, cryptochromes have light-independent functions and are very important transcriptional regulators that act at the molecular level as negative transcriptional regulators of the circadian clock. In this review, we highlight current knowledge concerning the structural and functional relationships of CPF members.


Asunto(s)
Criptocromos/metabolismo , Reparación del ADN , Desoxirribodipirimidina Fotoliasa/metabolismo , Proteínas Represoras/metabolismo , Transcripción Genética , Animales , Arabidopsis/metabolismo , Proteínas de Arabidopsis/metabolismo , Ritmo Circadiano , Cristalografía por Rayos X , Desoxirribodipirimidina Fotoliasa/química , Drosophila , Proteínas de Drosophila/metabolismo , Conformación Proteica , Relación Estructura-Actividad , Rayos Ultravioleta
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