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Amino Acid Sequence
Induction of oral tolerance in experimental Sjogren's syndrome autoimmunity.
Autoantibody to the leucine zipper region of 52 kDa Ro/SSA binds native 60 kDa Ro/SSA: identification of a tertiary epitope with components from 60 kDa Ro/SSA and 52 kDa Ro/SSA.
Strip immunoblotting of multiple antigenic peptides to nitrocellulose membrane.
Detection of calcium binding by Ro 60 multiple antigenic peptides on nitrocellulose membrane using Quin-2-.
Putative sequences on Ro60 three-dimensional structure accessible for 4-hydroxy-2-nonenal (HNE) modification compared to in vitro HNE modification of Ro60 sequences.
Immunization with 60 kD Ro peptide produces different stages of preclinical autoimmunity in a Sjögren's syndrome model among multiple strains of inbred mice.
HLA-B27 binding of peptide from its own sequence and similar peptides from bacteria: implications for spondyloarthropathies.
Immunization with short peptides from the sequence of the systemic lupus erythematosus-associated 60-kDa Ro autoantigen results in anti-Ro ribonucleoprotein autoimmunity.
Anti-Ro fine specificity defined by multiple antigenic peptides identifies components of tertiary epitopes.
Immunoblotting of multiple antigenic peptides.
Protein-protein interaction of the Ro-ribonucleoprotein particle using multiple antigenic peptides.
Selective small antigenic structures are capable of inducing widespread autoimmunity which closely mimics the humoral fine specificity of human SLE.
Calcium Binding by Ro 60 Multiple Antigenic Peptides on PVDF Membrane.
Phosrestin I undergoes the earliest light-induced phosphorylation by a calcium/calmodulin-dependent protein kinase in Drosophila photoreceptors.
Immunization with peptides from 60 kDa Ro in diverse mouse strains.
Phosrestin I, an arrestin homolog that undergoes light-induced phosphorylation in dipteran photoreceptors.
T Cell Mediated Conversion of a Non-Anti-La Reactive B Cell to an Autoreactive Anti-La B Cell by Somatic Hypermutation.
A Small Step, a Giant Leap: Somatic Hypermutation of a Single Amino Acid Leads to Anti-La Autoreactivity.
Amino Acid Sequence