Person: Izquierdo Rico, María José
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Izquierdo Rico, María José
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Universidad de Murcia. Departamento de Biología Celular e Histología
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- PublicationOpen AccessProtein identification of spermatozoa and seminal plasma in bottlenose dolphin (Tursiops truncatus)(2021-07-16) Fuentes-Albero, Mari Carmen; González-Brusi, Leopoldo; Luongo, Chiara; Abril-Sánchez, Silvia; Ros-Santaella, José Luis; Pintus, Eliana; Ruiz-Díaz, Sara; Barros-García, Carlos; Sánchez-Calabuig, María Jesús; García-Párraga, Daniel; García-Vázquez, Francisco Alberto; Cots Rodríguez, Paula; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Biología Celular e HistologíaProteins play an important role in many reproductive functions such as sperm maturation, sperm transit in the female genital tract or sperm-oocyte interaction. However, in general, little information concerning reproductive features is available in the case of aquatic animals. The present study aims to characterize the proteome of both spermatozoa and seminal plasma of bottlenose dolphins (Tursiops truncatus) as a model organism for cetaceans. Ejaculate samples were obtained from two trained dolphins housed in an aquarium. Spermatozoa and seminal plasma were analyzed by means of proteomic analyses using an LC-MS/MS, and a list with the gene symbols corresponding to each protein was submitted to the DAVID database. Of the 419 proteins identified in spermatozoa and 303 in seminal plasma, 111 proteins were shared by both. Furthermore, 70 proteins were identified as involved in reproductive processes, 39 in spermatozoa, and 31 in seminal plasma. The five most abundant proteins were also identified in these samples: AKAP3, ODF2, TUBB, GSTM3, ROPN1 for spermatozoa and CST11, LTF, ALB, HSP90B1, PIGR for seminal plasma. In conclusion, this study provides the first characterization of the proteome in cetacean sperm and seminal plasma, opening the way to future research into new biomarkers, the analysis of conservation capacity or possible additional applications in the field of assisted reproductive technologies.
- PublicationOpen AccessComposition of marsupial zona pellucida: a molecular and phylogenetic approach(2017) Chevret, P.; Holt, W.V.; Esteban-Dían, D.; López-Béjar, M.; Martínez-Nevado, E.; Nilsson, M.A.; Ballesta, J.; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Moros Nicolás, Carla; Biología Celular e HistologíaThe zona pellucida (ZP) is an extracellular matrix that surrounds mammalian oocytes. In eutherians it is formed from three or four proteins (ZP1, ZP2, ZP3, ZP4). In the few marsupials that have been studied, however, only three of these have been characterised (ZP2, ZP3, ZP4). Nevertheless, the composition in marsupials may be more complex, since a duplication of the ZP3 gene was recently described in one species. The aim of this work was to elucidate the ZP composition in marsupials and relate it to the evolution of the ZP gene family. For that, an in silico and molecular analysis was undertaken, focusing on two South American species (gray short-tailed opossum and common opossum) and five Australian species (brushtail possum, koala, Bennett’s wallaby, Tammar wallaby and Tasmanian devil). This analysis identified the presence of ZP1 mRNA and mRNA from two or three paralogues of ZP3 in marsupials. Furthermore, evidence for ZP1 and ZP4 pseudogenes in the South American subfamily Didelphinae and for ZP3 pseudogenes in two marsupials is provided. In conclusion, two different composition models are proposed for marsupials: a model with four proteins (ZP1, ZP2 and ZP3 (two copies)) for the South American species and a model with six proteins (ZP1, ZP2, ZP3 (three copies) and ZP4) for the Australasian species
- PublicationOpen AccessComunicaciones Póster.-Identification of lactadherin in the porcine oviductal secretion(2020-06-03) Acuña, O.S.; Jara, L.; Soriano-Úbeda, C.; Algarra-Oñate, B.; López Albors, Octavio Miguel; Guillén Martínez, Ascensión; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Moros Nicolás, Carla; Facultades, Departamentos, Servicios y Escuelas::Departamentos de la UMU::Biología Celular e Histología; Facultades, Departamentos, Servicios y Escuelas::Departamentos de la UMU::Fisiología; Facultades, Departamentos, Servicios y Escuelas::Departamentos de la UMU::Anatomía y Anatomía Patológica Comparada
- PublicationOpen AccessNew Insights into the Mammalian Egg Zona Pellucida(2021) Chevret, Pascale; Algarra, Blanca; González-Brusi, Leopoldo; Cots Rodríguez, Paula; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Jíménez Movilla, María; Moros Nicolás, Carla; Biología Celular e HistologíaMammalian oocytes are surrounded by an extracellular coat called the zona pellucida (ZP), which, from an evolutionary point of view, is the most ancient of the coats that envelope vertebrate oocytes and conceptuses. This matrix separates the oocyte from cumulus cells and is responsible for species-specific recognition between gametes, preventing polyspermy and protecting the preimplantation embryo. The ZP is a dynamic structure that shows different properties before and after fertilization. Until very recently, mammalian ZP was believed to be composed of only three glycoproteins, ZP1, ZP2 and ZP3, as first described in mouse. However, studies have revealed that this composition is not necessarily applicable to other mammals. Such differences can be explained by an analysis of the molecular evolution of the ZP gene family, during which ZP genes have suffered pseudogenization and duplication events that have resulted in differing models of ZP protein composition. The many discoveries made in recent years related to ZP composition and evolution suggest that a compilation would be useful. Moreover, this review analyses ZP biosynthesis, the role of each ZP protein in different mammalian species and how these proteins may interact among themselves and with other proteins present in the oviductal lumen.
- PublicationOpen AccessRelative transcript abundance in porcine cumulus cells collected from different sized follicles(2020) Li, Y.; González-Brusi, L.; Romar, R.; Funahashi, H.; Izquierdo Rico, María José; Moros Nicolás, Carla; Biología Celular e Histología
- PublicationOpen AccessBoar sperm motility is modulated by CCK at a low concentration of bicarbonate under capacitation conditions(2023) López-Úbeda, R.; Luongo, C.; Sòria-Monzó, P.; Abril-Sánchez, S.; Grudzinska, P.; García-Vázquez, F.A.; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Moros Nicolás, Carla; Biología Celular e Histología
- PublicationRestrictedExpression of IZUMO1 and JUNO in the gonads of domestic cats (Felis catus)(Elsevier, 2024-05) Sanguansook, P; Rodprasert, W; Sawangmake, C; Ferrán, JL; Soria-Monzó, P; Chatdarong, K; Gimeno Arias, Lourdes; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Biología Celular e HistologíaBecause of the time-consuming nature of surgical neutering and the rapid rate of reproduction among domestic cats, it is crucial to investigate alternative, nonsurgical methods of contraception for this species. Sperm protein IZUMO1 and its oocyte receptor JUNO have been proposed as potential targets for nonsurgical contraceptives. This study aimed to demonstrate (1) the protein coding sequence of feline IZUMO1 and JUNO, (2) gene expression in specific organs by measuring mRNA levels in different visceral tissues, and (3) the expression of IZUMO1 and JUNO during sperm maturation and folliculogenesis, respectively. Amplification for sequencing of feline IZUMO1 and JUNO was performed using the RT-PCR method. Levels of gene expression in different tissues were evaluated using real-time PCR. In situ hybridization was performed to localize JUNO mRNA in ovarian tissues. The complete coding sequences of IZUMO1 and JUNO were obtained and analyzed. A comparison between protein orthologs demonstrated the conservation of IZUMO1 and JUNO in Felidae. The real-time PCR results from various visceral organs indicated that IZUMO1 was significantly higher in the testis than in other organs, whereas JUNO was significantly higher in the ovary than in other organs. Expression of IZUMO1 was found to be higher in the testes than in the caput, corpus, and cauda of epididymides. In situ hybridization revealed that JUNO mRNA was in the ooplasm and nucleus of the primordial, primary, secondary, and antral follicles. Importantly, this was the first study to demonstrate the IZUMO1 and JUNO genes in the testis and ovary of cats. The results are useful for future research related to these genes and for developing contraceptives against these targets.
- PublicationOpen AccessZP4 confers structural properties to the zona pellucida essential for embryo development(2019-10-22) Lamas-Toranzo, Ismael; Fonseca Balvís, Noelia; Querejeta-Fernández, Ana; González-Brusi, Leopoldo; Lorenzo, Pedro L.; García-Rebollar, Pilar; Bermejo-Álvarez, Pablo; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Biología Celular e HistologíaZona pellucida (ZP), the extracellular matrix sheltering mammalian oocytes and embryos, is composed by 3 to 4 proteins. The roles of the three proteins present in mice have been elucidated by KO models, but the function of the fourth component (ZP4), present in all other eutherian mammals studied so far, has remained elusive. Herein, we report that ZP4 ablation impairs fertility in female rabbits. Ovulation, fertilization and in vitro development to blastocyst were not affected by ZP4 ablation. However, in vivo development is severely impaired in embryos covered by a ZP4-devoided zona, suggesting a defective ZP protective capacity in the absence of ZP4. ZP4-null ZP was significantly thinner, more permeable, and exhibited a more disorganized and fenestrated structure. The evolutionary conservation of ZP4 in other mammals, including humans, suggests that the structural properties conferred by this protein are required to ensure proper embryo sheltering during in vivo preimplantation development.
- PublicationOpen AccessCytochemical and biochemical evidences for a complex tridimensional structure of the hamster zona pellucida(Murcia : F. Hernández, 2009) Saavedra Leos, María Dolores; Gutiérrez Gallego, Ricardo; Fayrer Hosken, Richard; Ballesta Germán, José; Avilés Sánchez, Manuel; Castells Mora, María Teresa; Izquierdo Rico, María José; Jíménez Movilla, María; Martínez Alonso, Emma; Biología CelularZona pellucida (ZP) is an extracellular matrix that surrounds eggs and pre-implantation embryos and is required for in vivo fertility. A key event in successful fertilization is sperm binding to the surface of the ZP. It has been previously described that the hamster sperm binds mainly the outer region of the ZP which corresponds to the porous region in contact with the cumulus cells. Using ultrastructural cytochemistry approaches with an antibody developed against porcine ZP, this study shows that the pig ZP shares epitopes with some rodent species like hamster, rat and mouse. In the hamster, these epitopes are located mainly in the outer region of the ZP of preovulatory and ovulated oocytes. By means of biochemical approaches it was demonstrated that 1) the antibody is specific for the native hamster ZP3, 2) four different bands with a molecular weight of 67, 60, 48 and 38 kDa after Nlinked deglycosylation suggesting that the hamster ZP is formed by four proteins, and 3) the different composition observed in the outer region of the hamster ZP could be due to a specific supramolecular structure that makes some epitopes accessible for the antibodies. In summary, this study provides evidence that the different composition observed in the different regions of the ZP is mediated by a different organization of the components of the ZP produced during the oocyte maturation. This different organization could be responsible for the different sperm binding affinity observed for sperm to the outer region versus the inner region of the ZP.
- PublicationOpen AccessComparative View on the Oviductal Environment during the Periconception Period.(2020) González-Brusi, Leopoldo; Algarra, Blanca; Izquierdo Rico, María José; Avilés Sánchez, Manuel; Jíménez Movilla, María; Moros Nicolás, Carla; Biología Celular e HistologíaThe oviduct plays important roles in reproductive events: sperm reservoir formation, final gamete maturation, fertilization and early embryo development. It is well known that the oviductal environment affects gametes and embryos and, ultimately, the health of offspring, so that in vivo embryos are better in terms of morphology, cryotolerance, pregnancy rates or epigenetic profile than those obtained in vitro. The deciphering of embryo–maternal interaction in the oviduct may provide a better understanding of the embryo needs during the periconception period to improve reproductive efficiency. Here, we perform a comparative analysis among species of oviductal gene expression related to embryonic development during its journey through the oviduct, as described to date. Cross-talk communication between the oviduct environment and embryo will be studied by analyses of the secreted or exosomal proteins of the oviduct and the presence of receptors in the membrane of the embryo blastomeres. Finally, we review the data that are available to date on the expression and characterization of the most abundant protein in the oviduct, oviductin (OVGP1), highlighting its fundamental role in fertilization and embryonic development.
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