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PLoS Neglected Tropical Diseases, ISSN 1935-2727, 2013, Volume 7, Issue 11, p. e2489
Journal Article
by Matthew Berriman and Elodie Ghedin and Christiane Hertz-Fowler and Gaëlle Blandin and Hubert Renauld and Daniella C. Bartholomeu and Nicola J. Lennard and Elisabet Caler and Nancy E. Hamlin and Brian Haas and Ulrike Böhme and Linda Hannick and Martin A. Aslett and Joshua Shallom and Lucio Marcello and Lihua Hou and Bill Wickstead and U. Cecilia M. Alsmark and Claire Arrowsmith and Rebecca J. Atkin and Andrew J. Barron and Frederic Bringaud and Karen Brooks and Mark Carrington and Inna Cherevach and Tracey-Jane Chillingworth and Carol Churcher and Louise N. Clark and Craig H. Corton and Ann Cronin and Rob M. Davies and Jonathon Doggett and Appolinaire Djikeng and Tamara Feldblyum and Mark C. Field and Audrey Fraser and Ian Goodhead and Zahra Hance and David Harper and Barbara R. Harris and Heidi Hauser and Jessica Hostetler and Al Ivens and Kay Jagels and David Johnson and Justin Johnson and Kristine Jones and Arnaud X. Kerhornou and Hean Koo and Natasha Larke and Scott Landfear and Christopher Larkin and Vanessa Leech and Alexandra Line and Angela Lord and Annette MacLeod and Paul J. Mooney and Sharon Moule and David M. A. Martin and Gareth W. Morgan and Karen Mungall and Halina Norbertczak and Doug Ormond and Grace Pai and Chris S. Peacock and Jeremy Peterson and Michael A. Quail and Ester Rabbinowitsch and Marie-Adele Rajandream and Chris Reitter and Steven L. Salzberg and Mandy Sanders and Seth Schobel and Sarah Sharp and Mark Simmonds and Anjana J. Simpson and Luke Tallon and C. Michael R. Turner and Andrew Tait and Adrian R. Tivey and Susan Van Aken and Danielle Walker and David Wanless and Shiliang Wang and Brian White and Owen White and Sally Whitehead and John Woodward and Jennifer Wortman and Mark D. Adams and T. Martin Embley and Keith Gull and Elisabetta Ullu and J. David Barry and Alan H. Fairlamb and Fred Opperdoes and Barclay G. Barrell and John E. Donelson and Neil Hall and Claire M. Fraser and ...
Science, ISSN 0036-8075, 7/2005, Volume 309, Issue 5733, pp. 416 - 422
African trypanosomes cause human sleeping sickness and livestock trypanosomiasis in sub-Saharan Africa. We present the sequence and analysis of the 11... 
Enzymes | Pseudogenes | Genes | Actins | Cytoskeleton | Genomes | Parasitism | Research Articles | Parasites | Metabolism | Chromosomes | ANTIGENIC VARIATION | METABOLISM | MULTIDISCIPLINARY SCIENCES | SEQUENCE | GENES | PARASITIC PROTOZOA | SLEEPING SICKNESS | DRUG TARGET | LEISHMANIA-DONOVANI | CHEMOTHERAPY | TELOMERES | Antigens, Protozoan - immunology | Genome, Protozoan | Glycosylphosphatidylinositols - biosynthesis | Glutathione - metabolism | Humans | Spermidine - analogs & derivatives | Spermidine - metabolism | Molecular Sequence Data | Genes, Protozoan | Pyrimidines - biosynthesis | Protozoan Proteins - genetics | Trypanosoma brucei brucei - chemistry | Amino Acids - metabolism | Protozoan Proteins - metabolism | Chromosomes - genetics | Recombination, Genetic | Protozoan Proteins - chemistry | Antigens, Protozoan - genetics | Cytoskeleton - chemistry | Antigens, Protozoan - chemistry | Antigenic Variation | Glutathione - analogs & derivatives | Trypanosoma brucei brucei - metabolism | Purines - metabolism | Carbohydrate Metabolism | Cytoskeleton - genetics | Ergosterol - biosynthesis | Lipid Metabolism | Trypanosoma brucei brucei - genetics | Sequence Analysis, DNA | Protein Transport | Trypanosomiasis, African - parasitology | Animals | Cytoskeleton - physiology | Trypanosoma brucei brucei - immunology | Genetic aspects | Trypanosoma | Sleep disorders | Glycoproteins | Genomics
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 09/2016, Volume 291, Issue 38, pp. 19913 - 19922
Journal Article
PLoS Pathogens, ISSN 1553-7366, 2011, Volume 7, Issue 2, p. e1001276
Journal Article
Journal of Nanobiotechnology, ISSN 1477-3155, 09/2017, Volume 15, Issue 1, pp. 62 - 10
Background: The parasitic disease malaria remains a major global public health concern and no truly effective vaccine exists. One approach to the development... 
Protein nanoparticles | Self-assembly | Malaria | P27 | P27A | Vaccine | Blood stage | Tex1 | CIRCUMSPOROZOITE PROTEIN | T-CELL EPITOPES | NANOSCIENCE & NANOTECHNOLOGY | ANTIGENS | HUMAN INHIBITORY ANTIBODIES | HELPER EPITOPES | RESPONSES | INVASION | PEPTIDES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | PLASMODIUM-FALCIPARUM | MHC CLASS-II | Malaria, Falciparum - prevention & control | Antigens, Protozoan - immunology | Nanoparticles - chemistry | Humans | Plasmodium falciparum - immunology | Protozoan Proteins - therapeutic use | Protozoan Proteins - genetics | Malaria Vaccines - chemistry | Proliferating Cell Nuclear Antigen - genetics | Nanoparticles - therapeutic use | Plasmodium falciparum - genetics | Antigens, Protozoan - therapeutic use | Malaria Vaccines - immunology | Protein Engineering | Protein Domains | Proliferating Cell Nuclear Antigen - immunology | Protozoan Proteins - chemistry | Antigens, Protozoan - genetics | Malaria Vaccines - therapeutic use | Plasmodium falciparum - chemistry | Amino Acid Sequence | Immunization | Antigens, Protozoan - chemistry | Models, Molecular | Proliferating Cell Nuclear Antigen - chemistry | Animals | Malaria, Falciparum - immunology | Mice | Mice, Inbred BALB C | Proliferating Cell Nuclear Antigen - therapeutic use | Protozoan Proteins - immunology | Malaria Vaccines - genetics | Proteins | Prevention | Plasmodium falciparum | Immune response | Parasitic diseases | Analysis | Research | Health aspects | Public health | Coils | Animal models | Candidates | Peptides | Delivery systems | Amino acids | Vaccines | Nanoparticles | Lymphocytes | Low cost | Cross-protection | Immune system | Vector-borne diseases | Antigens | Immunoglobulins | Particulates | Epitopes | Immunogenicity | Scaffolding | Protein expression | Scaffolds
Journal Article
PLoS ONE, ISSN 1932-6203, 06/2017, Volume 12, Issue 6, p. e0179863
Protein alpha-helical coiled coil structures are known to induce antibodies able to block critical functions in different pathogens. In a previous study, a... 
VACCINE DEVELOPMENT | ANTIBODIES | FORCE | FALCIPARUM | MULTIDISCIPLINARY SCIENCES | DISEASE | INFECTION | ANTIGENS | NEW-GUINEAN CHILDREN | DOMAINS | EPIDEMIOLOGY | Papua New Guinea | Immunoglobulin G - blood | Humans | Peptides - genetics | Child, Preschool | Plasmodium vivax - genetics | Infant | Protozoan Proteins - genetics | Antibodies, Protozoan - blood | Malaria Vaccines - immunology | Protozoan Proteins - chemistry | Antigens, Protozoan - genetics | Malaria, Vivax - prevention & control | Plasmodium vivax - chemistry | Amino Acid Sequence | Protein Conformation, alpha-Helical | Antigens, Protozoan - chemistry | Peptides - chemistry | Malaria, Vivax - parasitology | Peptides - immunology | Risk Factors | Immunity, Innate | Plasmodium vivax - immunology | Animals | Malaria, Vivax - immunology | Longitudinal Studies | Protozoan Proteins - immunology | Malaria Vaccines - genetics | Proteins | Antigens | Immune response | Malaria | Health aspects | Immunoglobulin G | Coils | Disease | Peptides | IgG antibody | Erythrocytes | Antibodies | Infections | Biology | Vaccines | Parasites | Immunity | Tropical diseases | Population | Children | Age | Immune system | Vector-borne diseases | Pathogens | Medical research | Immunoglobulins | Markers | Equilibrium | Correlation analysis | Protein structure | Hygiene | Plasmodium vivax | Malària | Resposta immunitària | Malaria, Vivax | Malaria Vaccines | Antibodies, Protozoan | Protozoan Proteins | Antigens, Protozoan | Life Sciences | Human health and pathology | Immunology | Infectious diseases
Journal Article
PLoS Genetics, ISSN 1553-7390, 07/2018, Volume 14, Issue 7, p. e1007490
The malaria parasite Plasmodium falciparum has evolved an unusual genome structure. The majority of the genome is relatively stable, with mutation rates... 
G4 DNA | RECOMBINATION | CELLS | WRN HELICASE | ANTIGENIC VARIATION | SEQUENCES | RNA-SEQ | HUMAN ERYTHROCYTES | GENETICS & HEREDITY | VIRULENCE GENES | REVEALS | RNA, Protozoan - genetics | Gene Expression Regulation - genetics | RecQ Helicases - metabolism | Humans | RNA, Protozoan - isolation & purification | RecQ Helicases - genetics | Gene Expression Profiling | Plasmodium falciparum - immunology | Protozoan Proteins - genetics | Gene Knockdown Techniques | Whole Genome Sequencing | Malaria, Falciparum - parasitology | Protozoan Proteins - metabolism | Plasmodium falciparum - genetics | Malaria, Falciparum - immunology | DNA Replication - genetics | Antigens, Protozoan - genetics | Genomic Instability - genetics | Evolution, Molecular | Plasmodium falciparum | Microbiological research | DNA replication | Genetic research | Genetic aspects | Research | Gene expression | Helicases | Malaria | Genomics | DNA | Genomes | Genetic transcription | Recombination | Transcription | Laboratories | Entomology | Bias | Erythrocytes | Biology | Mutation rates | Parasites | Kinases | Drug resistance | Replication forks | DNA helicase | Fragile sites | Evolution | Bioinformatics | Supervision | Deoxyribonucleic acid--DNA | Antigens | Parasitology | Diversification | RecQ protein | DNA biosynthesis | Medicine | Mutation | Life Sciences | Microbiology and Parasitology | Populations and Evolution | Biochemistry, Molecular Biology | Genetics | Deoxyribonucleic acid
Journal Article
Immunity, ISSN 1074-7613, 03/2015, Volume 42, Issue 3, pp. 580 - 590
Journal Article
Journal Article