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1.
Int J Mol Sci ; 24(9)2023 Apr 30.
Artículo en Inglés | MEDLINE | ID: mdl-37175811

RESUMEN

Angiogenesis is crucial for cancer progression. While several anti-angiogenic drugs are in use for cancer treatment, their clinical benefits are unsatisfactory. Thus, a deeper understanding of the mechanisms sustaining cancer vessel growth is fundamental to identify novel biomarkers and therapeutic targets. Alternative splicing (AS) is an essential modifier of human proteome diversity. Nevertheless, AS contribution to tumor vasculature development is poorly known. The Neuro-Oncological Ventral Antigen 2 (NOVA2) is a critical AS regulator of angiogenesis and vascular development. NOVA2 is upregulated in tumor endothelial cells (ECs) of different cancers, thus representing a potential driver of tumor blood vessel aberrancies. Here, we identified novel AS transcripts generated upon NOVA2 upregulation in ECs, suggesting a pervasive role of NOVA2 in vascular biology. In addition, we report that NOVA2 is also upregulated in ECs of gastric cancer (GC), and its expression correlates with poor overall survival of GC patients. Finally, we found that the AS of the Rap Guanine Nucleotide Exchange Factor 6 (RapGEF6), a newly identified NOVA2 target, is altered in GC patients and associated with NOVA2 expression, tumor angiogenesis, and poor patient outcome. Our findings provide a better understanding of GC biology and suggest that AS might be exploited to identify novel biomarkers and therapeutics for anti-angiogenic GC treatments.


Asunto(s)
Empalme Alternativo , Células Endoteliales , Neoplasias Gástricas , Regulación hacia Arriba , Células Endoteliales/patología , Neoplasias Gástricas/fisiopatología , Neovascularización Patológica/genética , Humanos , Masculino , Femenino , Adulto , Persona de Mediana Edad , Anciano , Anciano de 80 o más Años , Biomarcadores , Pronóstico , Células Cultivadas , Animales , Ratones
2.
Sci Rep ; 13(1): 6232, 2023 04 21.
Artículo en Inglés | MEDLINE | ID: mdl-37085574

RESUMEN

Hornets are the largest of the social wasps, and are important regulators of insect populations in their native ranges. Hornets are also very successful as invasive species, with often devastating economic, ecological and societal effects. Understanding why these wasps are such successful invaders is critical to managing future introductions and minimising impact on native biodiversity. Critical to the management toolkit is a comprehensive genomic resource for these insects. Here we provide the annotated genomes for two hornets, Vespa crabro and Vespa velutina. We compare their genomes with those of other social Hymenoptera, including the northern giant hornet Vespa mandarinia. The three hornet genomes show evidence of selection pressure on genes associated with reproduction, which might facilitate the transition into invasive ranges. Vespa crabro has experienced positive selection on the highest number of genes, including those putatively associated with molecular binding and olfactory systems. Caste-specific brain transcriptomic analysis also revealed 133 differentially expressed genes, some of which are associated with olfactory functions. This report provides a spring-board for advancing our understanding of the evolution and ecology of hornets, and opens up opportunities for using molecular methods in the future management of both native and invasive populations of these over-looked insects.


Asunto(s)
Avispas , Animales , Avispas/genética , Especies Introducidas , Reproducción
3.
Genome Biol Evol ; 15(1)2023 01 04.
Artículo en Inglés | MEDLINE | ID: mdl-36527688

RESUMEN

The evolution of eusociality requires that individuals forgo some or all their own reproduction to assist the reproduction of others in their group, such as a primary egg-laying queen. A major open question is how genes and genetic pathways sculpt the evolution of eusociality, especially in rudimentary forms of sociality-those with smaller cooperative nests when compared with species such as honeybees that possess large societies. We lack comprehensive comparative studies examining shared patterns and processes across multiple social lineages. Here we examine the mechanisms of molecular convergence across two lineages of bees and wasps exhibiting such rudimentary societies. These societies consist of few individuals and their life histories range from facultative to obligately social. Using six species across four independent origins of sociality, we conduct a comparative meta-analysis of publicly available transcriptomes. Standard methods detected little similarity in patterns of differential gene expression in brain transcriptomes among reproductive and non-reproductive individuals across species. By contrast, both supervised machine learning and consensus co-expression network approaches uncovered sets of genes with conserved expression patterns among reproductive and non-reproductive phenotypes across species. These sets overlap substantially, and may comprise a shared genetic "toolkit" for sociality across the distantly related taxa of bees and wasps and independently evolved lineages of sociality. We also found many lineage-specific genes and co-expression modules associated with social phenotypes and possible signatures of shared life-history traits. These results reveal how taxon-specific molecular mechanisms complement a core toolkit of molecular processes in sculpting traits related to the evolution of eusociality.


Asunto(s)
Redes Reguladoras de Genes , Avispas , Abejas/genética , Animales , Conducta Social , Avispas/genética , Transcriptoma , Reproducción/genética , Aprendizaje Automático
4.
Sci Adv ; 8(15): eabn4935, 2022 04 15.
Artículo en Inglés | MEDLINE | ID: mdl-35417229

RESUMEN

Transition from maternal to embryonic transcriptional control is crucial for embryogenesis. However, alternative splicing regulation during this process remains understudied. Using transcriptomic data from human, mouse, and cow preimplantation development, we show that the stage of zygotic genome activation (ZGA) exhibits the highest levels of exon skipping diversity reported for any cell or tissue type. Much of this exon skipping is temporary, leads to disruptive noncanonical isoforms, and occurs in genes enriched for DNA damage response in the three species. Two core spliceosomal components, Snrpb and Snrpd2, regulate these patterns. These genes have low maternal expression at ZGA and increase sharply thereafter. Microinjection of Snrpb/d2 messenger RNA into mouse zygotes reduces the levels of exon skipping at ZGA and leads to increased p53-mediated DNA damage response. We propose that mammalian embryos undergo an evolutionarily conserved, developmentally programmed splicing failure at ZGA that contributes to the attenuation of cellular responses to DNA damage.


Asunto(s)
Regulación del Desarrollo de la Expresión Génica , Cigoto , Animales , Bovinos , Daño del ADN , Embrión de Mamíferos , Desarrollo Embrionario/genética , Femenino , Genoma , Mamíferos/genética , Ratones , Cigoto/metabolismo
5.
Nat Commun ; 12(1): 775, 2021 02 03.
Artículo en Inglés | MEDLINE | ID: mdl-33536437

RESUMEN

Phenotypic plasticity, the ability to produce multiple phenotypes from a single genotype, represents an excellent model with which to examine the relationship between gene expression and phenotypes. Analyses of the molecular foundations of phenotypic plasticity are challenging, however, especially in the case of complex social phenotypes. Here we apply a machine learning approach to tackle this challenge by analyzing individual-level gene expression profiles of Polistes dominula paper wasps following the loss of a queen. We find that caste-associated gene expression profiles respond strongly to queen loss, and that this change is partly explained by attributes such as age but occurs even in individuals that appear phenotypically unaffected. These results demonstrate that large changes in gene expression may occur in the absence of outwardly detectable phenotypic changes, resulting here in a socially mediated de-differentiation of individuals at the transcriptomic level but not at the levels of ovarian development or behavior.


Asunto(s)
Adaptación Fisiológica/genética , Biología Computacional/métodos , Perfilación de la Expresión Génica/métodos , Conducta Social , Transcriptoma/genética , Avispas/genética , Algoritmos , Animales , Femenino , Ontología de Genes , Redes Reguladoras de Genes , Humanos , Aprendizaje Automático , Fenotipo
6.
Nat Commun ; 11(1): 2631, 2020 05 26.
Artículo en Inglés | MEDLINE | ID: mdl-32457347

RESUMEN

The evolution of winged insects revolutionized terrestrial ecosystems and led to the largest animal radiation on Earth. However, we still have an incomplete picture of the genomic changes that underlay this diversification. Mayflies, as one of the sister groups of all other winged insects, are key to understanding this radiation. Here, we describe the genome of the mayfly Cloeon dipterum and its gene expression throughout its aquatic and aerial life cycle and specific organs. We discover an expansion of odorant-binding-protein genes, some expressed specifically in breathing gills of aquatic nymphs, suggesting a novel sensory role for this organ. In contrast, flying adults use an enlarged opsin set in a sexually dimorphic manner, with some expressed only in males. Finally, we identify a set of wing-associated genes deeply conserved in the pterygote insects and find transcriptomic similarities between gills and wings, suggesting a common genetic program. Globally, this comprehensive genomic and transcriptomic study uncovers the genetic basis of key evolutionary adaptations in mayflies and winged insects.


Asunto(s)
Adaptación Fisiológica/genética , Ephemeroptera/genética , Evolución Molecular , Alas de Animales , Animales , Ephemeroptera/clasificación , Ephemeroptera/crecimiento & desarrollo , Femenino , Regulación del Desarrollo de la Expresión Génica , Genes de Insecto/genética , Genoma de los Insectos/genética , Branquias , Insectos/clasificación , Insectos/genética , Estadios del Ciclo de Vida/genética , Masculino , Filogenia
7.
Cells ; 8(12)2019 11 23.
Artículo en Inglés | MEDLINE | ID: mdl-31771184

RESUMEN

Alternative splicing (AS) plays an important role in expanding the complexity of the human genome through the production of specialized proteins regulating organ development and physiological functions, as well as contributing to several pathological conditions. How AS programs impact on the signaling pathways controlling endothelial cell (EC) functions and vascular development is largely unknown. Here we identified, through RNA-seq, changes in mRNA steady-state levels in ECs caused by the neuro-oncological ventral antigen 2 (Nova2), a key AS regulator of the vascular morphogenesis. Bioinformatics analyses identified significant enrichment for genes regulated by peroxisome proliferator-activated receptor-gamma (Ppar-γ) and E2F1 transcription factors. We also showed that Nova2 in ECs controlled the AS profiles of Ppar-γ and E2F dimerization partner 2 (Tfdp2), thus generating different protein isoforms with distinct function (Ppar-γ) or subcellular localization (Tfdp2). Collectively, our results supported a mechanism whereby Nova2 integrated splicing decisions in order to regulate Ppar-γ and E2F1 activities. Our data added a layer to the sequential series of events controlled by Nova2 in ECs to orchestrate vascular biology.


Asunto(s)
Empalme Alternativo/genética , Células Endoteliales/metabolismo , Proteínas del Tejido Nervioso/genética , Proteínas de Unión al ARN/genética , Línea Celular Tumoral , Perfilación de la Expresión Génica , Células HeLa , Humanos , Antígeno Ventral Neuro-Oncológico , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa
8.
Mol Ecol ; 28(13): 3271-3284, 2019 07.
Artículo en Inglés | MEDLINE | ID: mdl-31141235

RESUMEN

Explaining the evolution of helping behaviour in the eusocial insects where nonreproductive ("worker") individuals help raise the offspring of other individuals ("queens") remains one of the most perplexing phenomena in the natural world. Polistes paper wasps are popular study models, as workers retain the ability to reproduce: such totipotency is likely representative of the early stages of social evolution. Polistes is thought to have originated in the tropics, where seasonal constraints on reproductive options are weak and social groups are effectively perennial. Yet, most Polistes research has focused on nontropical species, where seasonality causes family groups to disperse; cofoundresses forming new nests the following spring are often unrelated, leading to the suggestion that direct fitness through nest inheritance is key in the evolution of helping behaviour. Here, we present the first comprehensive genetic study of social structure across the perennial nesting cycle of a tropical Polistes-Polistes canadensis. Using both microsatellites and newly developed single nucleotide polymorphism markers, we show that adult cofoundresses are highly related and that brood production is monopolized by a single female across the nesting cycle. Nonreproductive cofoundresses in tropical Polistes therefore have the potential to gain high indirect fitness benefits as helpers from the outset of group formation, and these benefits persist through the nesting cycle. Direct fitness may have been less important in the origin of Polistes sociality than previously suggested. These findings stress the importance of studying a range of species with diverse life history and ecologies when considering the evolution of reproductive strategies.


Asunto(s)
Aptitud Genética , Conducta de Ayuda , Comportamiento de Nidificación , Avispas/fisiología , Animales , Femenino , Marcadores Genéticos , Genotipo , Masculino , Repeticiones de Microsatélite , Panamá , Polimorfismo de Nucleótido Simple , Reproducción , Avispas/genética
9.
Nature ; 564(7734): 64-70, 2018 12.
Artículo en Inglés | MEDLINE | ID: mdl-30464347

RESUMEN

Vertebrates have greatly elaborated the basic chordate body plan and evolved highly distinctive genomes that have been sculpted by two whole-genome duplications. Here we sequence the genome of the Mediterranean amphioxus (Branchiostoma lanceolatum) and characterize DNA methylation, chromatin accessibility, histone modifications and transcriptomes across multiple developmental stages and adult tissues to investigate the evolution of the regulation of the chordate genome. Comparisons with vertebrates identify an intermediate stage in the evolution of differentially methylated enhancers, and a high conservation of gene expression and its cis-regulatory logic between amphioxus and vertebrates that occurs maximally at an earlier mid-embryonic phylotypic period. We analyse regulatory evolution after whole-genome duplications, and find that-in vertebrates-over 80% of broadly expressed gene families with multiple paralogues derived from whole-genome duplications have members that restricted their ancestral expression, and underwent specialization rather than subfunctionalization. Counter-intuitively, paralogues that restricted their expression increased the complexity of their regulatory landscapes. These data pave the way for a better understanding of the regulatory principles that underlie key vertebrate innovations.


Asunto(s)
Regulación de la Expresión Génica , Genómica , Anfioxos/genética , Vertebrados/genética , Animales , Tipificación del Cuerpo/genética , Metilación de ADN , Humanos , Anfioxos/embriología , Anotación de Secuencia Molecular , Regiones Promotoras Genéticas , Transcriptoma/genética
10.
Trends Ecol Evol ; 32(11): 861-872, 2017 11.
Artículo en Inglés | MEDLINE | ID: mdl-28899581

RESUMEN

Social insect societies are long-standing models for understanding social behaviour and evolution. Unlike other advanced biological societies (such as the multicellular body), the component parts of social insect societies can be easily deconstructed and manipulated. Recent methodological and theoretical innovations have exploited this trait to address an expanded range of biological questions. We illustrate the broadening range of biological insight coming from social insect biology with four examples. These new frontiers promote open-minded, interdisciplinary exploration of one of the richest and most complex of biological phenomena: sociality.


Asunto(s)
Conducta Animal , Himenópteros/fisiología , Isópteros/fisiología , Conducta Social , Animales , Evolución Biológica
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