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HLA-DRB1 antibody

CAT: 0710-FNab03907Size: 100 µgDry Ice: NoHazardous: No
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CAT#:0710-FNab03907Size:100 µg
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Background
Binds peptides derived from antigens that access the endocytic route of antigen presenting cells (APC) and presents them on the cell surface for recognition by the CD4 T-cells. The peptide binding cleft accommodates peptides of 10-30 residues. The peptides presented by MHC class II molecules are generated mostly by degradation of proteins that access the endocytic route, where they are processed by lysosomal proteases and other hydrolases. Exogenous antigens that have been endocytosed by the APC are thus readily available for presentation via MHC II molecules, and for this reason this antigen presentation pathway is usually referred to as exogenous. As membrane proteins on their way to degradation in lysosomes as part of their normal turn-over are also contained in the endosomal/lysosomal compartments, exogenous antigens must compete with those derived from endogenous components. Autophagy is also a source of endogenous peptides, autophagosomes constitutively fuse with MHC class II loading compartments. In addition to APCs, other cells of the gastrointestinal tract, such as epithelial cells, express MHC class II molecules and CD74 and act as APCs, which is an unusual trait of the GI tract. To produce a MHC class II molecule that presents an antigen, three MHC class II molecules (heterodimers of an alpha and a beta chain) associate with a CD74 trimer in the ER to form a heterononamer. Soon after the entry of this complex into the endosomal/lysosomal system where antigen processing occurs, CD74 undergoes a sequential degradation by various proteases, including CTSS and CTSL, leaving a small fragment termed CLIP (class-II-associated invariant chain peptide) . The removal of CLIP is facilitated by HLA-DM via direct binding to the alpha-beta-CLIP complex so that CLIP is released. HLA-DM stabilizes MHC class II molecules until primary high affinity antigenic peptides are bound. The MHC II molecule bound to a peptide is then transported to the cell membrane surface. In B-cells, the interaction between HLA-DM and MHC class II molecules is regulated by HLA-DO. Primary dendritic cells (DCs) also to express HLA-DO. Lysosomal microenvironment has been implicated in the regulation of antigen loading into MHC II molecules, increased acidification produces increased proteolysis and efficient peptide loading.
Synonyms
HLA class II histocompatibility antigen, DRB1 beta chain|Human leukocyte antigen DRB1 (HLA-DRB1) |HLA-DRB1
Gene ID
3123
UniProt
Q29974
Host
Rabbit
Reactivity
Human
Immunogen
Major histocompatibility complex, class II, DR beta 1
Target
HLA-DRB1
Clonality
Polyclonal
Isotype
IgG
Applications
ELISA, WB
Field of Research
Neuroscience, Immunology, Cardiovascular
Purification
Immunogen affinity purified
Dilution
WB: 1:500-1:2000
Purity
≥95% as determined by SDS-PAGE
Form
Liquid
Molecular Weight
27-30 kDa
Shipping Conditions
4°C with ice bag
Storage Conditions
PBS with 0.02% sodium azide and 50% glycerol pH 7.3, -20°C for 12 months (Avoid repeated freeze / thaw cycles.)
Tested Applications
ELISA, WB

UniProtKB · P01911

HLA class II histocompatibility antigen, DRB1 beta chain

DRB1_HUMAN · Homo sapiens

View on UniProt ↗
Primary accession
P01911
Review status
UniProtKB reviewed (Swiss-Prot)
Gene
HLA-DRB1
Protein existence
1: Evidence at protein level
Organism
Homo sapiens (Human)
Taxonomy ID
9606
Alternative names
—
EC number
—
Processing
Precursor
Secondary accessions
A0MWF2, A0N0W1, A2ICT1, A2TGX3, A4F5N0, A4ZXA5, A4ZXA6, A4ZY86, A5H000, A5HKN8, A7DZP9, A7LA26, A7UHG2, A7X5B1, A7X5B7, A7X5E0, A7X5E6, A7X5H8, A7X5J4, A7X5K7, A8K098, A8YQE9, A9JPG0, B0BK85, B0LUZ6, B0UYW1, B1GWE7, B2CR03, B2LVF9, B2NJ29, B2ZCY1, B3VTP8, B3VTQ3, B5A8Y2, B5A8Y3, B5B8U0, B5B9V5, B5B9V6, B5LZ25, B5QSK8, B6VCX2, B6VEL9, B7UDB2, B9VRA4, B9X248, C0LAB5, O02876, O02930, O19585, O19717, O19718, O19739, O19788, O46699, O46793, O46872, O62869, O62889, O77969, O78047, O78210, O98212, P01912, P01914, P04229, P13758, P13759, P13760, P13761, P20039, P79545, Q06662, Q0PGR5, Q0PQ39, Q14280, Q14QT2, Q155F7, Q19AF2, Q19K86, Q1AP33, Q1G0Z9, Q1JRP3, Q1KLJ6, Q27PR6, Q27PR7, Q29673, Q29720, Q29722, Q29734, Q29770, Q29771, Q29772, Q29790, Q29792, Q29800, Q29806, Q29833, Q29874, Q29875, Q29886, Q29968, Q29974, Q29975, Q2A120, Q2HZE5, Q2L9H4, Q2LE76, Q2MF40, Q2MJA6, Q2MZ92, Q2VQU1, Q2YHQ2, Q30006, Q30108, Q30112, Q30115, Q30116, Q30117, Q30120, Q30134, Q30142, Q30145, Q30149, Q30159, Q30166, Q30167, Q30200, Q307W5, Q31636, Q32MY7, Q3HUP9, Q3KTM1, Q3LA84, Q3LA87, Q3LA88, Q3LA89, Q3LA90, Q3LA91, Q3LA92, Q3LA93, Q3LA94, Q3LA95, Q3LA96, Q3LA97, Q3LA98, Q3LA99, Q3LAA0, Q3LAA1, Q3LAA2, Q3MQ60, Q3T919, Q4PRC3, Q4PRC5, Q4VZY7, Q53IG1, Q56FN9, Q56FP1, Q56FP2, Q56FP3, Q58F52, Q5BM92, Q5EER6, Q5K3W2, Q5NDB9, Q5U9W6, Q5UBA2, Q5UT58, Q5W3L4, Q5Y7A7, Q5Y7B0, Q5Y7B9, Q5Y7E9, Q5Y7G0, Q683P7, Q6REE2, Q6T865, Q6U387, Q701T1, Q70GL2, Q70Q85, Q768U2, Q768U4, Q7M2H4, Q7YNY9, Q7YP03, Q7YP04, Q7YQ26, Q7YQA3, Q7YQA5, Q860D8, Q860D9, Q860E5, Q860H8, Q860S0, Q860Z3, Q861G6, Q861H0, Q861H4, Q861H5, Q861H7, Q861H8, Q8HWQ6, Q8MH59, Q8MH60, Q8WLU3, Q8WMA0, Q95348, Q95383, Q95389, Q95461, Q95HK1, Q95HL0, Q95HL1, Q95IE3, Q95IG2, Q95IT6, Q96HZ9, Q9BCL7, Q9BCP0, Q9BCP1, Q9BCP2, Q9BCP5, Q9BD21, Q9BD33, Q9BD40, Q9GIK5, Q9GIL5, Q9GIL6, Q9GIP3, Q9GIX8, Q9GIX9, Q9GIY0, Q9GIY1, Q9GIY2, Q9GIY3, Q9GIY4, Q9GJ25, Q9GJ56, Q9GJ57, Q9GJ58, Q9GJ60, Q9GJF8, Q9GJF9, Q9GJG0, Q9MXZ0, Q9MXZ5, Q9MY13, Q9MY45, Q9MY56, Q9MYF5, Q9TPB6, Q9TPW1, Q9TPW3, Q9TPW9, Q9TPX4, Q9TQ37, Q9TQ91, Q9TQE0, Q9UBY1, Q9UIM9, Q9UIN0, Q9XRX1, Q9XRY4, Q9XRY5, Q9Y453, Q9Y4H7
Protein keywords

Technical term

3D-structureDirect protein sequencingProteomics identificationReference proteome

Biological process

Adaptive immunityImmunity

Cellular component

Cell membraneCytoplasmic vesicleEndoplasmic reticulumEndosomeLysosomeMembraneMHC II

PTM

Disulfide bondGlycoproteinIsopeptide bondUbl conjugation

Domain

SignalTransmembraneTransmembrane helix

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