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Nature, ISSN 0028-0836, 06/2012, Volume 486, Issue 7403, pp. 420 - 428
Highly pathogenic avian H5N1 influenza A viruses occasionally infect humans, but currently do not transmit efficiently among humans. The viral haemagglutinin... 
SINGLE AMINO-ACID | MEMBRANE-FUSION | IN-VITRO | AVIAN H5N1 | HEMAGGLUTININ | A VIRUSES | MULTIDISCIPLINARY SCIENCES | SIALIC-ACID | RECEPTOR-BINDING SPECIFICITY | MOLECULAR-BASIS | SWINE-ORIGIN H1N1 | Pandemics | Reassortant Viruses - pathogenicity | Influenza A Virus, H5N1 Subtype - physiology | Receptors, Virus - metabolism | Humans | Influenza A Virus, H1N1 Subtype - physiology | Reassortant Viruses - genetics | Reassortant Viruses - physiology | Influenza A Virus, H5N1 Subtype - genetics | Body Fluids - virology | Molecular Epidemiology - methods | Ferrets - virology | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Zoonoses - virology | Respiratory System - virology | Adaptation, Physiological - genetics | HEK293 Cells | Female | Influenza, Human - virology | Protein Stability | Influenza A Virus, H1N1 Subtype - genetics | Population Surveillance - methods | Cell Line | Security Measures | Birds - virology | Influenza A Virus, H1N1 Subtype - pathogenicity | Influenza in Birds - transmission | Hot Temperature | Influenza, Human - transmission | Hemagglutinin Glycoproteins, Influenza Virus - metabolism | Reassortant Viruses - isolation & purification | Respiratory System - anatomy & histology | Zoonoses - transmission | Animals | Receptors, Virus - chemistry | Orthomyxoviridae Infections - transmission | Dogs | Influenza in Birds - virology | Bioterrorism - prevention & control | Influenza A Virus, H5N1 Subtype - pathogenicity | HeLa Cells | Influenza, Human - prevention & control | Orthomyxoviridae Infections - virology | Evolution, Molecular | Prevention | Epidemics | Disease transmission | United States | Japan | Avian influenza viruses | Physiological aspects | Genetic aspects | Research | Host-virus relationships | Ferrets | Cell culture | Task forces | Compliance | Laboratories | RNA polymerase | Academic libraries | Experiments | Avian flu | Proteins | Studies | Swine flu | Plasmids | Risk assessment | Occupational health | Mutation
Journal Article
Immunity, ISSN 1074-7613, 04/2018, Volume 48, Issue 4, pp. 702 - 715.e4
Journal Article
Immunity, ISSN 1074-7613, 08/2017, Volume 47, Issue 2, pp. 268 - 283.e9
Foxp3 controls the development and function of regulatory T (Treg) cells, but it remains elusive how Foxp3 functions in vivo. Here, we established mouse models... 
DNA-binding specificity | autoimmunity | regulatory T cells | non-lymphoid tissues | disease-causing mutation | Foxp3 | BATF | IMMUNE DYSREGULATION | TARGET GENES | COMPLEX | X-LINKED SYNDROME | ENTEROPATHY | SPECIFICITY | DNA | LYMPHOPROLIFERATIVE DISORDER | IMMUNOLOGY | EXPRESSION | ADIPOSE-TISSUE | Basic-Leucine Zipper Transcription Factors - metabolism | Immune System Diseases - genetics | Humans | Diabetes Mellitus, Type 1 - congenital | Mutation, Missense - genetics | Organ Specificity - genetics | DNA Mutational Analysis | Forkhead Transcription Factors - metabolism | Diarrhea - immunology | Genetic Diseases, X-Linked - genetics | Cell Differentiation | Diabetes Mellitus, Type 1 - immunology | T-Lymphocytes, Regulatory - physiology | Mice, Inbred C57BL | Cells, Cultured | Immune System Diseases - immunology | Diabetes Mellitus, Type 1 - genetics | Inflammation - immunology | Basic-Leucine Zipper Transcription Factors - genetics | Forkhead Transcription Factors - genetics | Mice, Knockout | Genetic Diseases, X-Linked - immunology | Immune System Diseases - congenital | Animals | Diarrhea - genetics | Alleles | Inflammation - genetics | Mice | Mice, Inbred BALB C | Cell Movement | Autoimmunity | Microbiology | T cells | Analysis | Cells | Animal models | Transcription factors | Nucleotide sequence | Immunoregulation | Lymphocytes T | Genomes | Inflammation | Lymphoid tissue | Gene expression | Tissues | Hypotheses | Lymphocytes | Bioaccumulation | Rodents | Foxp3 protein | Physiology | Mutation | Differentiation | Deoxyribonucleic acid--DNA
Journal Article
Cell Reports, ISSN 2211-1247, 12/2017, Volume 21, Issue 13, pp. 3941 - 3956
While both archaeal and eukaryotic transcription initiation systems utilize TBP (TATA box-binding protein) and TFIIB (transcription factor IIB), eukaryotic... 
TFIIB | TBP | transcription | molecular evolution | RNA-POLYMERASE-II | ACCURATE TRANSCRIPTION | YEAST TFIIA/TBP/DNA COMPLEX | CRYSTAL-STRUCTURE | FACTOR-TFIIB | CORE DOMAIN | TATA-BINDING-PROTEIN | MINOR-GROOVE | ARCHAEAL TRANSCRIPTION | MULTIPLE FACTORS | CELL BIOLOGY
Journal Article
Nature Communications, ISSN 2041-1723, 12/2019, Volume 10, Issue 1, pp. 1 - 10
Mosaic loss of chromosome Y (mLOY) is frequently observed in the leukocytes of ageing men. However, the genetic architecture and biological mechanisms... 
Enrichment | Architecture | Blood cells | Erythrocytes | Differentiation (biology) | Genomes | Leukocytes | Cell differentiation | Blood | Hematopoietic stem cells | Hemopoiesis | Genetic effects | Genetic markers | Red blood cells | Stem cells | Aging | Biomarkers | Heritability | Platelets | Chromosomes | Binding sites
Journal Article
Nucleic Acids Research, ISSN 0305-1048, 06/2016, Volume 44, Issue 11, pp. 5010 - 5021
Journal Article
Journal Article