Allele Report for DQB1*05:01:01:01

DQB1*05:01:01:01 View HGVS Report
Pre-2010 Nomenclature: DQB1*050101 Local Names: DQB1*05011, DQB 1.1, DQw1.1,
IMGT/HLA Acc No: HLA00638 OMIM Entry: *604305
Assigned: 1989-08-01 Sequence Last Modified: 1999-08-06
Source Entries: AY663400 , L34101 , M65044 , X03068  
Cells Sequence Derived From: 45.1 , BM.L , DC , JR , KAS116 , LG2 , MDR , MVL , NA01018 , WG  
Known Ethnic Origin Of Source: Caucasoid
Publications
Horn GT et al. Proc Natl Acad Sci U S A 85:6012-6 1988. (View abstract)
Raymond CK et al. Genome Res 15:1250-7 2005. (View abstract)
Todd JA et al. Nature 329:599-604 1987. (View abstract)
Bell JI et al. Proc Natl Acad Sci U S A 82:3405-9 1985. (View abstract)
Yasunaga S et al. Tissue Antigens 47:37-48 1996. (View abstract)
Tonnelle C et al. EMBO J 4:2839-47 1985. (View abstract)
Confirmatory Data
Sequence Status: Complete CDS Confirmed: Confirmed
Cells: 10 Laboratories: 6
HLA Dictionary Data
Expert Assigned Type: DQ5 WHO Assigned Type: DQ5(1)
Tested by: No. Cells Tested: Assigned Type:
International Cell Exchange UCLA (2008) 27 DQ1 [25-67%] DQ5 [20-63%] DQ6 [0-13%]
NMDP (2008) 5539 DQ5 [69%] DQ1 [20%] DQ6 [2%]
13 IHWC (2002) Not tested Not tested
Neural Network Assigned Type: Training - DQ1 DQ5
Comments:
Protein Sequence (261 aa)
MSWKKSLRIPGDLRVATVTLMLAILSSSLAEGRDSPEDFVYQFKGLCYFTNGTERVRGVTRHIYNREEYVRFDSDVGVYR
AVTPQGRPVAEYWNSQKEVLEGARASVDRVCRHNYEVAYRGILQRRVEPTVTISPSRTEALNHHNLLICSVTDFYPSQIK
VRWFRNDQEETAGVVSTPLIRNGDWTFQILVMLEMTPQRGDVYTCHVEHPSLQSPITVEWRAQSESAQSKMLSGVGGFVL
GLIFLGLGLIIRQRSRKGLLH
Nucleotide Sequence Data (786 bps)
ATGTCTTGGAAGAAGTCTTTGCGGATCCCCGGAGACCTTCGGGTAGCAACTGTCACCTTGATGCTGGCGATCCTGAGCTC
CTCACTGGCTGAGGGCAGAGACTCTCCCGAGGATTTCGTGTACCAGTTTAAGGGCCTGTGCTACTTCACCAACGGGACGG
AGCGCGTGCGGGGTGTGACCAGACACATCTATAACCGAGAGGAGTACGTGCGCTTCGACAGCGACGTGGGGGTGTACCGG
GCAGTGACGCCGCAGGGGCGGCCTGTTGCCGAGTACTGGAACAGCCAGAAGGAAGTCCTGGAGGGGGCCCGGGCGTCGGT
GGACAGGGTGTGCAGACACAACTACGAGGTGGCGTACCGCGGGATCCTGCAGAGGAGAGTGGAGCCCACAGTGACCATCT
CCCCATCCAGGACAGAGGCCCTCAACCACCACAACCTGCTGATCTGCTCGGTGACAGATTTCTATCCAAGCCAGATCAAA
GTCCGGTGGTTTCGGAATGATCAGGAGGAGACAGCCGGCGTTGTGTCCACCCCCCTCATTAGGAACGGTGACTGGACCTT
CCAGATCCTGGTGATGCTGGAAATGACTCCCCAGCGTGGAGATGTCTACACCTGCCACGTGGAGCACCCCAGCCTCCAGA
GCCCCATCACCGTGGAGTGGCGGGCTCAGTCTGAATCTGCCCAGAGCAAGATGCTGAGTGGCGTTGGAGGCTTCGTGCTG
GGGCTGATCTTCCTTGGGCTTGGCCTTATCATCCGTCAAAGGAGTCGGAAAGGGCTTCTGCACTGA
Genomic Sequence Data (7090 bps)
TTCTAAGACCTTTGCTCTTCTCCCCAGGACTTAAGGCTCTTCAGCGTGTCTAAGACAACAGCAGTAAAAATTTCTGTGAC
AGCAATTTTCTCTCCCCTGAAATATGATCCCCACCTAATTTGCTTTATTAAAAATCCCAAGTATAATAACAACTGGTTTT
TAACAATATTACAGAGATGTTTACTGTTGAATTGCATTTTTCTTTTGCCTCTCAAAATCCCTGAGGAATTTGTTCTTCAG
CTCTTCTATAATCGAGAGGAAATTTTCACCTCAGATGTTCATCCAGTGCAATTGGAAGACGTCACAGTGCCAGGCACTGG
ATTGAGAACCTTCACAAAAAAAAATGTCTGCCCAGAGACAGATGAGGTCCTTCAGCTCCAGTGCTGATTGGTTCTTTTCC
AAGCGACCATCCAATCCTGCCACGCACGGAAACATCCACAGGTTTTTATTCTTTCTGCCAGGTACATCAGATCCATCAGG
TCTGAGCTGTGTTGACTACCACTACTTTTCCCTTCGTCTCAATTATGTCTTGGAAGAAGTCTTTGCGGATCCCCGGAGAC
CTTCGGGTAGCAACTGTCACCTTGATGCTGGCGATCCTGAGCTCCTCACTGGCTGAGGGCAGAGACTCTCCCGGTAAGTG
CAGGAAAGCTGCTCTCCAGAGCCGCCACTCTGGGAACAGGCTTTCCTTGGGCTGGGGTATGGGGGATGGTGATCTCCATG
GTCTTGGACACAATCTTTCATCAACATTTCCTCTTTTTTGGGAAAGAAAGCTATGTTGCATTCCCATTTACCTTTTAGTG
ATGAAATGAGGACAATCCAATCCCCATCCTACAGGTTTAAGCCTGGAAGAGGAGGAGAGAGGAGAGGAAAGAGGAGATAA
AGTGTACATTTACTACCAGTGATAGGACAAAGTGAGCATGGGGTTATTTTTGAAGATATTAATTTCTCCAAAGACACAGC
AGGATTTGTCATTTCAGCGTGCCCCAAGACTTTGCCTGGACTAAATATTATGAGATTCTGCAGTGGGAAATGTAAGGCAG
CGATGGTGTCTGTAGTCTCCGTATTTGAGGAAAAGTAGTCTGTATTCCTGACTGACTGGAGCGTTTGTGGAGGCAAAATC
TTGGTACTGAGGGAAGCTGACTGGCTGACCACAGACAGGGAGTCTTCAGGTTTCACTGATTTATGGGCAAATGGTGACTT
GAGTGGGATTCAGAGACCCGAGTTGTTGGTGGACTAAATTTAGTAGAAAGGAGGATGTAAAGAAGGGAAATAACACATAT
TATGAAACCACTCACTCAGACACAGAACAATACTTTACATAAATTCTCTCTCACTCCTTCTAACATCCTGTGTGCAGATA
TCATGATTTTCTTTTACACAATTATACTTGTGATACGGATATTCTGCCCAATATGGATATACACAACCTGGCCAAGCTGG
TAACTGCCACAGTTTAATTGGAATCTAGTTTATCAAATTCAAAAGCTTATGCTCTTTCCATGAATAAATATTTCTATCTA
GGACTCAGAGTTGTAGGTCCTTTCCAACATAGAAGGGAGTGAACCTCAACGGGTCTTGGGAGGGTAAATCCAGGCATGGG
AAGGAAGGTATTTTACCCAGGGACCAAGAGAATACGCGTATCAGAACGAGGACAAGATTAATTCCTGGACCTGTCGCATC
ATTCCCTTGAACTCACAGGTTTATGTGGATAAGTTTATCTCTGAGGTTTCCAGGAGCTGCATGAAAAATGGGATTTCATG
CGAGAACGCCCCGATCCCTCTAAGTGCAGAGGTCCATGTAAAATCAGCCCGACTGCCTCTTCGCTGGGTTCACTGGCTCA
GGCAGGGACAGGGCTTTCCGCCCTTTCCTGCCTGTAGGAAGGCGGATTCCCGAAGCCCCCAGAGAGGGCGGGCAGGGCTG
GGCAGAGCCGCCGGGAGGATCCCAGGTCTGGGGCGCCAGGCACGGGCTGGCGGGAACTGGAGGTCGCGCGGGCGGTTCCA
CAGCTCCGGTCCGGGTCAGGGCGGCGGCTGGGGGCGCAGCCGGGCTAGGGCCAGGCTGGGGCCTGACTGACTGGCCCGTG
ATTCCCCGCAGAGGATTTCGTGTACCAGTTTAAGGGCCTGTGCTACTTCACCAACGGGACGGAGCGCGTGCGGGGTGTGA
CCAGACACATCTATAACCGAGAGGAGTACGTGCGCTTCGACAGCGACGTGGGGGTGTACCGGGCAGTGACGCCGCAGGGG
CGGCCTGTTGCCGAGTACTGGAACAGCCAGAAGGAAGTCCTGGAGGGGGCCCGGGCGTCGGTGGACAGGGTGTGCAGACA
CAACTACGAGGTGGCGTACCGCGGGATCCTGCAGAGGAGAGGTGAGCGTCGTCGCCCCTCCGTGAGGCCCACCGTTGGCC
GGGACCTCTAGTCTCTGTGCTGGGAGGGGCGATGGGGTTGCGGCCTCTGAAACCTGAGCCCCGTTTATTCCACCCCAGGG
GACAGGAGTTGGCGGCGTGAGTGGTGGGGCAGGTGCATCAGATGGGCGGGGACCTAGGGCAGAGCAGGGAGACAAGCAGA
GTTGGCCAGGCTGCCTAGTGTCCCCCCAGGGTCCTCGTCTGTTGGCCTCGTCCTCCGCTCTGCACGTTTCTCGCCTCGTG
CCTTATGTGTTTGCCTCCTCGTGCCTTACCTTTGCTAAGCAGTTCTCTCTGCCCCCAATGCCCACCCTCTTCCCCTGCCC
GTCCGCCCCACTAGCACTGCCCCATTCAGCAAGGCCCACGTGCGCAGCTCGCGCCGCAGGAAGCTTCAGGCTTGGCCTGG
TGGAGTTAGGGCTGCCCCACAACTGCGCCCAGGGCATCCAGCAATTACAGTTGCAAAATAAGATATTTTGACTTTTTGGC
TTCAAATCATTATTCATCGTAATTCTGTTTTCCTAAATGGCTATCACTAATGGCGGAGATTTTTGAGGTGGGAGACTGTT
TAAATTATTGCATACTTGGTACCTGACACTTTGACTGGTATGTGGTATGAGCTCAATGATCTTCTGTTAAATTCATGAAT
AAATGTACTCAGCTGCCCATCCACTTAGGCTCAAGAAAAAAACAGAGGCTTACAAATGGACTTTGTTAATTATTTTCTAT
CATTTTGCCTAATGCTTTAAAGTAAACTCTTATTGACTAGGATCTTAATAGAATTTGTGAATACAAAGTCTGAGAAAAAA
AGTGTTTGCTAAAAATAAAAACAATGCTTGAATGACGTTGTAAGGCAGAGTTTTAATTTCTTAGACAAGCTGAACAAATG
GCACAATGCAAAGGGCAGAAGTTTGGGAATAAATAGGTTGAAGCCATTAAATTATTAGATAAAAATAGTTTCAGGTTGCT
TTTGGCCTGGGTTCTCCCCTCCCTCCATCACTATCCACTTCAGGAATAAACATTCTGAAAGTCAATTTTACCCATTCAGG
TAGCACTTATTTCTAGACAGTTGCCTTATCAAATACCATATATGTTGTGCCATTTAATCTCACAGTTACCTGTGCATTAG
AGATTAGCATCACCACTTGATATATCCTAATATTGGTACAGGATAAACACTTTAAGTAATCAGCCCACAATTACTCACCA
AGACCTTAAGCCTCCCAAAGTATAAACCATTCTTATGTTCCTCAGTGTACATCCATAGAGTCTAAGGGATGTAAGGCCTT
GTTGAAGCCAGTTTTGACCAGAAGCAGCAATGAGCCTATTCCTGTTTGTTCTCCATGTTAATGGGGCATTGAAAATTCAC
TGATTAATCAATCCCTAGTCTGACCCCAGTGTTATCTATGCAGGTTCACAAAACTTTTAGATTACTTTACACCCCCTTGC
CTTCTTTTGACTCACATTCTAATGCCAGCAAGTACTTATATTTTTGCTATTTCAGTTCTATTTCCATAAAATTTATTTTA
TCATCTTTTCTCATAAAATTGTGCCCTCTATTTTACTCCCAGTCTGTTTAAGATGAACAAATCTTACAAGGTCACATAGC
TGACTGTGATATCAGTTGGACTCCAGGAAGGAGAACCTAAAGAAAAGTTCAAGTCCAAGCAGAAACCGTGATTCCTTCCG
GATGATGGCTCAAGAGTGCTGTTTAACTGGGATGCAACCTGCTGACCTCAGCAAATCCTAGTTATATGTATGTGTTCACA
TTACAGGCTCATTAGCCCAGGCCGACCTCTGCATGGATCTCAGAATATTTTCTATGGAGAACATACATGATAATGTCTGA
TTTCAGAACAAGAAAGTAATTCTCAATAGCAAGGAAATGGAGTAGGGTAGACAGCTAGTAACTAAACTCACTTGTGCGTT
AAGAAGAAATTAAGGAAAAAAGAAAATAAGAGAACATATTACTAAATAAAGAAACACACATTAAATATTTGCTATAGTTT
CACACTAAGAGAATAAAGGAAATGCAATAAAGTGGCCTGAAAGGTAAAGGATGAGATGTGTAAAAGAGGCAGGGAAAGAT
GTATAATAATTTTTTACTATGAGCAGCAATCTGAGAAGATAAAGGAATTGAGCTGTGGGCAAACATGATGTTTGATCAGT
GTTATTTGTTTTCAAGGCCTGCCTACTTTTTTTTTCAAATATTACAAACTTTTGAAATAACATTCTTTTTGTTTTTTACT
GTCTGTTACTAGATTGCATATTCTATAAATGAAGGGACCATGGTATGTTGTTTATCTTTGGATTCTCAGTGATTGTCAAA
TTTATATTTGTTGAAGGAACCTTAATCCAAGACTTGGACTCCAGGTATCTTTCCACTCTGGTTCCAAGGAGGGACCCTTC
CTCATGGTGGACGTGCTGTGTGGTCTCACGTCTCACTCCTGTGTCTTTTCCTGTCTGTTACTGCCCTTAGTGGAGCCCAC
AGTGACCATCTCCCCATCCAGGACAGAGGCCCTCAACCACCACAACCTGCTGATCTGCTCGGTGACAGATTTCTATCCAA
GCCAGATCAAAGTCCGGTGGTTTCGGAATGATCAGGAGGAGACAGCCGGCGTTGTGTCCACCCCCCTCATTAGGAACGGT
GACTGGACCTTCCAGATCCTGGTGATGCTGGAAATGACTCCCCAGCGTGGAGATGTCTACACCTGCCACGTGGAGCACCC
CAGCCTCCAGAGCCCCATCACCGTGGAGTGGCGTAAGGAGATATTGAGTTTCTGTTATTATGGGCCCCACAAGACAAAGA
GCTCCTTCTGACCCATTCCTTCCCATCTCTTATCCCTGATGTCACTACTGAGCTGGGAATCACAGGAGACTAGAGCACCT
CTAGTTCCATGGCGAGTGCATCAGAAGAATCCTGATCTCATCACCTTTCCAGATGCTAGGGAAATTACTCTACATACTGT
TGCTCTGGATCCCAGTCCTGATAGCTCTGACGGACTGATTCTTAGGGCTGGTGATTGGGATCTTAGGGTCTAAGGTTATG
GATGAGTTCCTGAGGAGCAGAGATTTGCTTCCCCACTCTCTCACCTACCCACTGTATCCAAGGACCTATTGTCTGGCCTT
TCCCCTCCTTAGGGGTGGTCTGAATGGAGAGCTAGGTTCCTTTGATGCCTTCACCTCCTGCACCTCAGACTGGACTTCAA
CTCCTCAGCAGGGATGCTATGGGGTGTGGGGACAAACACTGACACTCAGGTTCTGCTTTTTAGGGGCTCAGTCTGAATCT
GCCCAGAGCAAGATGCTGAGTGGCGTTGGAGGCTTCGTGCTGGGGCTGATCTTCCTTGGGCTTGGCCTTATCATCCGTCA
AAGGAGTCGGAAAGGTGAGGAACCCCAGGGGAAAAGGGGAAGATGGGCTGTGACCCAGACCCTCTGTTCAGAGTGGTCCT
GTCTGTAGATTAGCTCTTTCCTCCTGACCCTGAGAGGAAGTGCGAGGAGACAGGACAAGATGGGAGGAGGCATTGGAATC
TGATTTTACTGGTTGAAAGGTAGCGCTGTCACAGAGCTGACTGATAGAGCTTATTCCAGGGCATCCTTACCATTCATCAT
TGTCTCACTGGCTCCTTTCCAAAAGCTTCCTCCATTAAGAGGGTCAGAGCCTCAGCCTCCTTTCTTTCTGGTGACAATTT
CCTTTGTTTTAGGGGATTTTAAATTAGGGTGCTGAAGGCCTGGAAGAACATGGGTGGGAAGAGAATGTAACTCTAAGTCA
TGTGTGTCATTTTCCTTTGGGGTGAGAGAGTGGCTGTTTGTGTAATGAGACCTTTCTCTGCATAACTTCCTTTTGTAAGA
CCTCAAGGGCCTCCACCAGCAGGTAATATTTCAGCCATGATCCAGTGTGGGGAGGCACAGGTATAAGAGGGAAGAGCATG
AGCTGAGTGTACCTGACCACAGTGGTCCATGTTCGTGGCCTATTTGCTGCTATGAGGATCAAGACTTAGGGGAGAAGTTT
GCCAGTTTCTAGGAATCTCCAGACATTGTTCCCCAGAACCAAGCCTTAACTTTGGTGGCATCTTCTTGTGAAATGTGGAG
CCAGAACCACAGCTTAAATGTTAGACACTAGGATGATGCCCACTTTGTGCCACATGATGGTGGCTACTGCCTGTAGGCAT
TTTCCAGTGACTGAAAGAGGCTGCTAGTGGTCGGGATGAGATATCATCCAATTTCCTAAAAAGACTGAACCCTTCATATT
CCCCAGAAGAATAACAGCTGTTCCCCACCTCCCACACATCTGCATCAAGCTGAAGTTCTGTGTCCTCGTGAGCTGATTTC
ACCTTTGCACAGATCTTGGGGGAGGTGATGACAATACACCCTGGACCTCAACTTTCTCTGTCTGAAGCTGCAGGGGGCCC
CTGAAGGGTGGGGGAGATGGCAGGCCCACCAGGATACCCTGTGCTGATCAATCCTCTTCTCTCTTCTCCAGGGCTTCTGC
ACTGACTCCTGAGACTGTTTTAACTAAGACTGGTTATCACTCTTCTGTGATGCCTGCTTGTCCCTGCCCAGAATTCCCAG
CTGCCTGTGTCAGCTTGTCCCCCTGAGATCAAAGTCCTACAGTGGCTGTCACGCAACCACCAGGTCATCTCCTTTCATCC
CCACCCCAAGGCGCTGGCTGTGACTCTGCTTCCTGCACTGACCCAGAGCC

IMGT/HLA

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