Karel Estrada
National Autonomous University of Mexico
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Publication
Featured researches published by Karel Estrada.
Nature | 2013
Isheng J. Tsai; Magdalena Zarowiecki; Nancy Holroyd; Alejandro Garciarrubio; Alejandro Sanchez-Flores; Karen Brooks; Alan Tracey; Raúl J. Bobes; Gladis Fragoso; Edda Sciutto; Martin Aslett; Helen Beasley; Hayley M. Bennett; Jianping Cai; Federico Camicia; Richard M. Clark; Marcela Cucher; Nishadi De Silva; Tim A. Day; Peter Deplazes; Karel Estrada; Cecilia Fernández; Peter W. H. Holland; Junling Hou; Songnian Hu; Thomas Huckvale; Stacy S. Hung; Laura Kamenetzky; Jacqueline A. Keane; Ferenc Kiss
Tapeworms (Cestoda) cause neglected diseases that can be fatal and are difficult to treat, owing to inefficient drugs. Here we present an analysis of tapeworm genome sequences using the human-infective species Echinococcus multilocularis, E. granulosus, Taenia solium and the laboratory model Hymenolepis microstoma as examples. The 115- to 141-megabase genomes offer insights into the evolution of parasitism. Synteny is maintained with distantly related blood flukes but we find extreme losses of genes and pathways that are ubiquitous in other animals, including 34 homeobox families and several determinants of stem cell fate. Tapeworms have specialized detoxification pathways, metabolism that is finely tuned to rely on nutrients scavenged from their hosts, and species-specific expansions of non-canonical heat shock proteins and families of known antigens. We identify new potential drug targets, including some on which existing pharmaceuticals may act. The genomes provide a rich resource to underpin the development of urgently needed treatments and control.
PLOS ONE | 2016
Andrea Bedoya-López; Karel Estrada; Alejandro Sanchez-Flores; Octavio T. Ramírez; Claudia Altamirano; Lorenzo Segovia; Juan Miranda-Ríos; Mauricio A. Trujillo-Roldán; Norma A. Valdez-Cruz
Recombinant proteins are widely used as biopharmaceuticals, but their production by mammalian cell culture is expensive. Hence, improvement of bioprocess productivity is greatly needed. A temperature downshift (TDS) from 37°C to 28–34°C is an effective strategy to expand the productive life period of cells and increase their productivity (qp). Here, TDS in Chinese hamster ovary (CHO) cell cultures, initially grown at 37°C and switched to 30°C during the exponential growth phase, resulted in a 1.6-fold increase in the qp of recombinant human tissue plasminogen activator (rh-tPA). The transcriptomic response using next-generation sequencing (NGS) was assessed to characterize the cellular behavior associated with TDS. A total of 416 (q > 0.8) and 3,472 (q > 0.9) differentially expressed transcripts, with more than a 1.6-fold change at 24 and 48 h post TDS, respectively, were observed in cultures with TDS compared to those at constant 37°C. In agreement with the extended cell survival resulting from TDS, transcripts related to cell growth arrest that controlled cell proliferation without the activation of the DNA damage response, were differentially expressed. Most upregulated genes were related to energy metabolism in mitochondria, mitochondrial biogenesis, central metabolism, and avoidance of apoptotic cell death. The gene coding for rh-tPA was not differentially expressed, but fluctuations were detected in the transcripts encoding proteins involved in the secretory machinery, particularly in glycosylation. Through NGS the dynamic processes caused by TDS were assessed in this biological system.
Current Topics in Medicinal Chemistry | 2014
Luz Mayela Soto-Jimenez; Karel Estrada; Alejandro Sanchez-Flores
Over the past decades DNA sequencing technologies have been improving in aspects like quality, read length, runtimes and yields, all at a lower cost. Despite these improvements, genome assembly remains a challenge in genome sequencing projects, especially when different sequencing platforms are used. At the present, there is no program that can handle and assemble different sequencing technologies better than specialized software for each of them. Also, very few protocols are available for merging results from different algorithms, technologies or both. We present GARM, (Genome Assembler, Reconciliation and Merging) a pipeline to merge assemblies from different algorithms or sequencing technologies.
Veterinary Journal | 2013
Yuliet Diaz-Masmela; Gladis Fragoso; Javier R. Ambrosio; Guillermo Mendoza-Hernández; Gabriela Rosas; Karel Estrada; Julio César Carrero; Edda Sciutto; Juan Pedro Laclette; Raúl J. Bobes
Cysticercosis, caused by the larval stage of Taenia solium, is a zoonotic disease affecting pigs and humans that is endemic to developing countries in Latin America, Africa and South East Asia. The prevalence of infection in pigs, the intermediate host for T. solium, has been used as an indicator for monitoring disease transmission in endemic areas. However, accurate and specific diagnostic tools for porcine cysticercosis remain to be established. Using proteomic approaches and the T. solium genome sequence, seven antigens were identified as specific for porcine cysticercosis, namely, tropomyosin 2, alpha-1 tubulin, beta-tubulin 2, annexin B1, small heat-shock protein, 14-3-3 protein, and cAMP-dependent protein kinase. None of these proteins were cross-reactive when tested with sera from pigs infected with Ascaris spp., Cysticercus tenuicollis and hydatid cysts of Echinococcus spp. or with serum from a Taenia saginata-infected cow. Comparison with orthologues, indicated that the amino acid sequences of annexin B1 and cAMP-dependent protein kinase possessed highly specific regions, which might make them suitable candidates for development of a specific diagnostic assay for porcine cysticercosis.
Genome Announcements | 2015
Edmundo Calva; Claudia Silva; Mussaret B. Zaidi; Alejandro Sanchez-Flores; Karel Estrada; Genivaldo G. Z. Silva; Luz Mayela Soto-Jimenez; Magdalena Wiesner; Marcos Fernández-Mora; Robert Edwards; Pablo Vinuesa
ABSTRACT Salmonella enterica subsp. enterica serovar Typhimurium strain YU39 was isolated in 2005 in the state of Yucatán, Mexico, from a human systemic infection. The YU39 strain is representative of the multidrug-resistant emergent sequence type 213 (ST213) genotype. The YU39 complete genome is composed of a chromosome and seven plasmids.
Genome Announcements | 2014
Isabel Cuesta; Luis Miguel González; Karel Estrada; Ricardo Grande; Ángel Zaballos; Cheryl A. Lobo; Jorge de la Barrera; Alejandro Sanchez-Flores; Estrella Montero
ABSTRACT Babesia divergens causes significant morbidity and mortality in cattle and splenectomized or immunocompromised individuals. Here, we present a 10.7-Mb high-quality draft genome of this parasite close to chromosome resolution that will enable comparative genome analyses and synteny studies among related parasites.
Genome Announcements | 2016
Libia Zulema Rodriguez-Anaya; Jose Reyes Gonzalez-Galaviz; Ramón Casillas-Hernández; Fernando Lares-Villa; Karel Estrada; José Cuauhtémoc Ibarra-Gámez; Alejandro Sanchez-Flores
ABSTRACT The first genome sequence of a Mexican white spot syndrome virus is presented here. White spot syndrome is a shrimp pandemic virus that has devastated production in Mexico for more than 10 years. The availability of this genome will greatly aid epidemiological studies worldwide, contributing to the molecular diagnostic and disease prevention in shrimp farming.
G3: Genes, Genomes, Genetics | 2015
Patricia Velez; Naholi D. Alejandri-Ramírez; María C. González; Karel Estrada; Alejandro Sanchez-Flores; Tzvetanka D. Dinkova
Marine sandy beaches represent dynamic environments often subject to harsh conditions and climate fluctuations, where natural and anthropogenic inputs of freshwater from fluvial and pluvial sources alter salinity, which has been recognized as a key variable affecting the distribution of aquatic organisms and influencing critical physiological processes. The marine arenicolous fungus Corollospora maritima is a worldwide-distributed saprobe that has been reported to present tolerance to freshwater. Here, we present a transcriptome analysis that will provide the first insight of the genomic content for this fungus and a gene expression comparison between two different salinity conditions. We also identified genes that are candidates for being differentially expressed in response to environmental variations on salinity during the fungal growth. The de novo reconstruction of C. maritima transcriptome Illumina sequencing provided a total of 14,530 transcripts (16 megabases). The comparison between the two growth conditions rendered 103 genes specifically overexpressed in seawater, and 132 genes specifically up-regulated under freshwater. Using fungal isolates collected from different beaches, the specific environmental regulation of particular transcript differential expression was confirmed by RT-qPCR. To our knowledge, this is the first analysis that explores the marine fungus C. maritima molecular responses to overcome freshwater stress, and these data could shed light to understand the fungal adaptation and plasticity mechanisms to the marine habitat.
Scientific Reports | 2017
Laura Adalid-Peralta; Gabriela Rosas; Asiel Arce-Sillas; Raúl J. Bobes; Graciela Cárdenas; Marisela Hernández; Celeste Trejo; Gabriela Castaño Meneses; Beatriz Hernández; Karel Estrada; Agnès Fleury; Juan Pedro Laclette; Carlos Larralde; Edda Sciutto; Gladis Fragoso
Taeniids exhibit a great adaptive plasticity, which facilitates their establishment, growth, and reproduction in a hostile inflammatory microenvironment. Transforming Growth Factor-β (TGFβ), a highly pleiotropic cytokine, plays a critical role in vertebrate morphogenesis, cell differentiation, reproduction, and immune suppression. TGFβ is secreted by host cells in sites lodging parasites. The role of TGFβ in the outcome of T. solium and T. crassiceps cysticercosis is herein explored. Homologues of the TGFβ family receptors (TsRI and TsRII) and several members of the TGFβ downstream signal transduction pathway were found in T. solium genome, and the expression of Type-I and -II TGFβ receptors was confirmed by RT-PCR. Antibodies against TGFβ family receptors recognized cysticercal proteins of the expected molecular weight as determined by Western blot, and different structures in the parasite external tegument. In vitro, TGFβ promoted the growth and reproduction of T. crassiceps cysticerci and the survival of T. solium cysticerci. High TGFβ levels were found in cerebrospinal fluid from untreated neurocysticercotic patients who eventually failed to respond to the treatment (P = 0.03) pointing to the involvement of TGFβ in parasite survival. These results indicate the relevance of TGFβ in the infection outcome by promoting cysticercus growth and treatment resistance.
Infection and Immunity | 2017
Raúl J. Bobes; José Navarrete-Perea; Adrián Ochoa-Leyva; Víctor Hugo Anaya; Marisela Hernández; Jacquelynne Cervantes-Torres; Karel Estrada; Filiberto Sánchez-López; Xavier Soberón; Gabriela Rosas; Cáris Maroni Nunes; Martín García-Varela; Rogerio R. Sotelo-Mundo; Alonso A. Lopez-Zavala; Goar Gevorkian; Gonzalo Acero; Juan Pedro Laclette; Gladis Fragoso; Edda Sciutto
ABSTRACT Taenia solium cysticercosis, a parasitic disease that affects human health in various regions of the world, is preventable by vaccination. Both the 97-amino-acid-long KETc7 peptide and its carboxyl-terminal, 18-amino-acid-long sequence (GK-1) are found in Taenia crassiceps. Both peptides have proven protective capacity against cysticercosis and are part of the highly conserved, cestode-native, 264-amino-acid long protein KE7. KE7 belongs to a ubiquitously distributed family of proteins associated with membrane processes and may participate in several vital cell pathways. The aim of this study was to identify the T. solium KE7 (TsKE7) full-length protein and to determine its immunogenic properties. Recombinant TsKE7 (rTsKE7) was expressed in Escherichia coli Rosetta2 cells and used to obtain mouse polyclonal antibodies. Anti-rTsKE7 antibodies detected the expected native protein among the 350 spots developed from T. solium cyst vesicular fluid in a mass spectrometry-coupled immune proteomic analysis. These antibodies were then used to screen a phage-displayed 7-random-peptide library to map B-cell epitopes. The recognized phages displayed 9 peptides, with the consensus motif Y(F/Y)PS sequence, which includes YYYPS (named GK-1M, for being a GK-1 mimotope), exactly matching a part of GK-1. GK-1M was recognized by 58% of serum samples from cysticercotic pigs with 100% specificity but induced weak protection against murine cysticercosis. In silico analysis revealed a universal T-cell epitope(s) in native TsKE7 potentially capable of stimulating cytotoxic T lymphocytes and helper T lymphocytes under different major histocompatibility complex class I and class II mouse haplotypes. Altogether, these results provide a rationale for the efficacy of the KETc7, rTsKE7, and GK-1 peptides as vaccines.