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Structural insights into complement regulation
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Doctoral thesis 1 (Research UU / Graduation UU)
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Keyphrases
Alternative Pathway
100%
Complement System
100%
C3 Convertase
100%
Complement Regulators
100%
Complement Regulation
100%
Structural Insights
100%
Classical Pathway
100%
Cofactor Activity
66%
Lectin Pathway
66%
Virus
33%
Innate Immune Response
33%
Molecular Mechanism
33%
Microbes
33%
Adaptive Immune Response
33%
Host Cell
33%
Regulatory Mechanism
33%
Age-related Macular Degeneration
33%
Autoantibodies
33%
Dissociation
33%
Serine Protease
33%
Complement Receptors
33%
Cell Lysis
33%
I to
33%
Common Platform
33%
Debris
33%
Activity Control
33%
Atypical Hemolytic Uremic Syndrome (aHUS)
33%
Opsonization
33%
Smallpox
33%
Pattern Recognition
33%
Enzyme Complex
33%
Complement Activity
33%
T Cell Development
33%
B Cell Development
33%
Complement Proteins
33%
Decay Accelerating Factor
33%
Terminal Pathway
33%
Membrane Cofactor Protein
33%
Complement Attack
33%
Paroxysmal Nocturnal Hemoglobinuria
33%
Overactivation
33%
Targeted Cells
33%
Immunology and Microbiology
C3b
100%
Complement System
60%
C3-Convertase
60%
Complement Regulator
40%
Lectin Pathway
40%
Virus
20%
Smallpox
20%
Innate Immune System
20%
Adaptive Immune System
20%
Autoantibodies
20%
Factor H
20%
B Cell Development
20%
Decay-Accelerating Factor
20%
T Cell Development
20%
Complement Receptor 1
20%
CD46
20%
Host Cell
20%
Crystal Structure
20%
Cytolysis
20%
Pattern Recognition
20%
Opsonization
20%
Complement Component C4b
20%
Microorganism
20%
Fibrinogen
20%
Serine
20%
Biochemistry, Genetics and Molecular Biology
C3b
100%
C3-Convertase
60%
Complement System
60%
Lectin Pathway
40%
Enzyme
40%
Crystal Structure
20%
Microorganism
20%
Innate Immunity
20%
Cell Maturation
20%
Adaptive Immunity
20%
Cytolysis
20%
Opsonization
20%
Pattern Recognition
20%
T Cell
20%
Factor H
20%
Autoantibodies
20%
B Cell
20%
Serine Protease
20%
Decay-Accelerating Factor
20%
CD46
20%
Complement Receptor 1
20%
Fibrinogen
20%