Allele Report for B*40:10:01

B*40:10:01 View HGVS Report
Pre-2010 Nomenclature: B*4010 Local Names: B*40MD, B*40011Var, B*40Var, B40New , B*4012Variant
IMGT/HLA Acc No: HLA00301 OMIM Entry: *142830
Assigned: 1996-06-29 Sequence Last Modified: 2011-10-10
Source Entries: AF106628 , AF106629 , AH005602 , AH005674 , AH007470 , AJ580500 , AJ580501 , AJ580502 , HE576769 , U58643 , U58644 , U93915 , U93916 , Y15840 , Y16636 , Y16639  
Cells Sequence Derived From: 10PNG , GN00160 , MD676 , NMDP#019350966 , PK , TER1165 , TER1166  
Known Ethnic Origin Of Source: Caucasoid, Oriental, Pacific Islander
Publications
Steiner N et al. Hum Immunol 56:84-93 1997. (View abstract)
Confirmatory Data
Sequence Status: Complete CDS Confirmed: Confirmed
Cells: 7 Laboratories: 6
HLA Dictionary Data
Expert Assigned Type: B60 WHO Assigned Type: B60(40)
Tested by: No. Cells Tested: Assigned Type:
International Cell Exchange UCLA (2008) 10 B60 [75-93%] B40 [14-15%] B61 [3-8%] B48 [2-3%]
NMDP (2008) 28 B60 [43%] B61 [25%] B40 [14%] blank [11%]
13 IHWC (2002) 2 B60
Neural Network Assigned Type: B60
Comments: short B60, B48-like 
Protein Sequence (362 aa)
MRVTAPRTLLLLLWGALALTETWAGSHSMRYFYTAMSRPGRGEPRFIAVGYVDDTQFVRFDSDATSPRKEPRAPWIEQEG
PEYWDRETQISKTNTQTYRESLRNLRGYYNQSEAGSHTLQRMYGCDVGPDGRLLRGHNQYAYDGKDYIALNEDLRSWTAA
DTAAQISQRKLEAARVAEQLRAYLEGECVEWLRRYLENGKDKLERADPPKTHVTHHPISDHEATLRCWALGFYPAEITLT
WQRDGEDQTQDTELVETRPAGDRTFQKWAAVVVPSGEEQRYTCHVQHEGLPKPLTLRWEPSSQSTVPIVGIVAGLAVLAV
VVIGAVVAAVMCRRKSSGGKGGSYSQAACSDSAQGSDVSLTA
Nucleotide Sequence Data (1089 bps)
ATGCGGGTCACGGCACCCCGAACCCTCCTCCTGCTGCTCTGGGGGGCCCTGGCCCTGACCGAGACCTGGGCCGGCTCCCA
CTCCATGAGGTATTTCTACACCGCCATGTCCCGGCCCGGCCGCGGGGAGCCCCGCTTCATCGCAGTGGGCTACGTGGACG
ACACGCAGTTCGTGAGGTTCGACAGCGACGCCACGAGTCCGAGGAAGGAGCCGCGGGCGCCATGGATAGAGCAGGAGGGG
CCGGAGTATTGGGACCGGGAGACACAGATCTCCAAGACCAACACACAGACTTACCGAGAGAGCCTGCGGAACCTGCGCGG
CTACTACAACCAGAGCGAGGCCGGGTCTCACACCCTCCAGAGGATGTACGGCTGCGACGTGGGGCCGGACGGGCGCCTCC
TCCGCGGGCATAACCAGTACGCCTACGACGGCAAGGATTACATCGCCCTGAACGAGGACCTGCGCTCCTGGACCGCCGCG
GACACGGCGGCTCAGATCTCCCAGCGCAAGTTGGAGGCGGCCCGTGTGGCGGAGCAGCTGAGAGCCTACCTGGAGGGCGA
GTGCGTGGAGTGGCTCCGCAGATACCTGGAGAACGGGAAGGACAAGCTGGAGCGCGCTGACCCCCCAAAGACACACGTGA
CCCACCACCCCATCTCTGACCATGAGGCCACCCTGAGGTGCTGGGCCCTGGGTTTCTACCCTGCGGAGATCACACTGACC
TGGCAGCGGGATGGCGAGGACCAAACTCAGGACACTGAGCTTGTGGAGACCAGACCAGCAGGAGATAGAACCTTCCAGAA
GTGGGCAGCTGTGGTGGTGCCTTCTGGAGAAGAGCAGAGATACACATGCCATGTACAGCATGAGGGGCTGCCGAAGCCCC
TCACCCTGAGATGGGAGCCGTCTTCCCAGTCCACCGTCCCCATCGTGGGCATTGTTGCTGGCCTGGCTGTCCTAGCAGTT
GTGGTCATCGGAGCTGTGGTCGCTGCTGTGATGTGTAGGAGGAAGAGTTCAGGTGGAAAAGGAGGGAGCTACTCTCAGGC
TGCGTGCAGCGACAGTGCCCAGGGCTCTGATGTGTCTCTCACAGCTTGA
Genomic Sequence Data (3304 bps)
GATCAGGACGAAGTCCCATGTCCCGGACGGGGCTCTCAGGGTCTCAGGCTCCGAGGGCCGCGTCTGCATTGGGGAGGCGC
AGCGTTGGGGATTCCCCACTCCCACGAGTTTCACTTCTTCTCCCAACCTATGTCGGGTCCTTCTTCCAGGATACTCGTGA
CGCGTCCCCATTTCCCACTCCCATTGGGTGTCGGGTGTCTAGAGAAGCCAATCAGTGTCGCCGGGGTCCCAGTTCTAAAG
TCCCCACGCACCCACCCGGACTCAGAATCTCCTCAGACGCCGAGATGCGGGTCACGGCACCCCGAACCCTCCTCCTGCTG
CTCTGGGGGGCCCTGGCCCTGACCGAGACCTGGGCCGGTGAGTGCGGGTCGGGAGGGAAATGGCCTCTGTGGGGAGGAGC
GAGGGGACCGCAGGCGGGGGCGCAGGACCCGGGGAGCCGCGCCGGGAGGAGGGTCTGGCGGGTCTCAGCCCCTCCTCGCC
CCCAGGCTCCCACTCCATGAGGTATTTCTACACCGCCATGTCCCGGCCCGGCCGCGGGGAGCCCCGCTTCATCGCAGTGG
GCTACGTGGACGACACGCAGTTCGTGAGGTTCGACAGCGACGCCACGAGTCCGAGGAAGGAGCCGCGGGCGCCATGGATA
GAGCAGGAGGGGCCGGAGTATTGGGACCGGGAGACACAGATCTCCAAGACCAACACACAGACTTACCGAGAGAGCCTGCG
GAACCTGCGCGGCTACTACAACCAGAGCGAGGCCGGTGAGTGACCCCGGCCCGGGGCGCAGGTCACGACTCCCCATCCCC
CACGTACGGCCCGGGTCGCCCCGAGTCTCCGGGTCCGAGATCCGACCCCCTGAGGCCGCGGGACCCGCCCAGACCCTCGA
CCGGCGAGAGCCCCAGGCGCGTTTACCCGGTTTCATTTTCAGTTGAGGCCAAAATCCCCGCGGGTTGGTCGGGGCGGGGC
GGGGCTCGGGGGACTGGGCTGACCGCGGGGCCGGGGCCAGGGTCTCACACCCTCCAGAGGATGTACGGCTGCGACGTGGG
GCCGGACGGGCGCCTCCTCCGCGGGCATAACCAGTACGCCTACGACGGCAAGGATTACATCGCCCTGAACGAGGACCTGC
GCTCCTGGACCGCCGCGGACACGGCGGCTCAGATCTCCCAGCGCAAGTTGGAGGCGGCCCGTGTGGCGGAGCAGCTGAGA
GCCTACCTGGAGGGCGAGTGCGTGGAGTGGCTCCGCAGATACCTGGAGAACGGGAAGGACAAGCTGGAGCGCGCTGGTAC
CAGGGGCAGTGGGGAGCCTTCCCCATCTCCTATAGGTCGCCGGGGATGGCCTCCCACGAGAAGAGGAGGAAAATGGGATC
AGCGCTAGAATGTCGCCCTCCGTTGAATGGAGAATGGCATGAGTTTTCCTGAGTTTCCTCTGAGGGCCCCCTCTTCTCTC
TAGACAATTAAGGAATGACGTCTCTGAGGAAATGGAGGGGAAGACAGTCCCTAGAATACTGATCAGGGGTCCCCTTTGAC
CCCTGCAGCAGCCTTGGGAACCGTGACTTTTCCTCTCAGGCCTTGTTCTCTGCCTCACACTCAGTGTGTTTGGGGCTCTG
ATTCCAGCACTTCTGAGTCACTTTACCTCCACTCAGATCAGGAGCAGAAGTCCCTGTTCCCCGCTCAGAGACTCGAACTT
TCCAATGAATAGGAGATTATCCCAGGTGCCTGCGTCCAGGCTGGTGTCTGGGTTCTGTGCCCCTTCCCCACCCCAGGTGT
CCTGTCCATTCTCAGGCTGGTCACATGGGTGGTCCTAGGGTGTCCCATGAAAGATGCAAAGCGCCTGAATTTTCTGACTC
TTCCCATCAGACCCCCCAAAGACACACGTGACCCACCACCCCATCTCTGACCATGAGGCCACCCTGAGGTGCTGGGCCCT
GGGTTTCTACCCTGCGGAGATCACACTGACCTGGCAGCGGGATGGCGAGGACCAAACTCAGGACACTGAGCTTGTGGAGA
CCAGACCAGCAGGAGATAGAACCTTCCAGAAGTGGGCAGCTGTGGTGGTGCCTTCTGGAGAAGAGCAGAGATACACATGC
CATGTACAGCATGAGGGGCTGCCGAAGCCCCTCACCCTGAGATGGGGTAAGGAGGGGGATGAGGGGTCATATCTCTTCTC
AGGGAAAGCAGGAGCCCTTCAGCAGGGTCAGGGCCCCTCATCTTCCCCTCCTTTCCCAGAGCCGTCTTCCCAGTCCACCG
TCCCCATCGTGGGCATTGTTGCTGGCCTGGCTGTCCTAGCAGTTGTGGTCATCGGAGCTGTGGTCGCTGCTGTGATGTGT
AGGAGGAAGAGTTCAGGTAGGGAAGGGGTGAGGGGTGGGGTCTGGGTTTTCTTGTCCCACTGGGGGTTTCAAGCCCCAGG
TAGAAGTGTTCCCTGCCTCATTACTGGGAAGCAGCATGCACACAGGGGCTAACGCAGCCTGGGACCCTGTGTGCCAGCAC
TTACTCTTTTGTGCAGCACATGTGACAATGAAGGATGGATGTATCACCTTGATGGTTGTGGTGTTGGGGTCCTGATTCCA
GCATTCATGAGTCAGGGGAAGGTCCCTGCTAAGGACAGACCTTAGGAGGGCAGTTGGTCCAGGACCCACACTTGCTTTCC
TCGTGTTTCCTGATCCTGCCCTGGGTCTGTAGTCATACTTCTGGAAATTCCTTTTGGGTCCAAGACTAGGAGGTTCCTCT
AAGATCTCATGGCCCTGCTTCCTCCCAGTGCCCTCACAGGACATTTTCTTCCCACAGGTGGAAAAGGAGGGAGCTACTCT
CAGGCTGCGTGTAAGTGGTGGGGGTGGGAGTGTGGAGGAGCTCACCCACCCCATAATTCCTCCTGTCCCACGTCTCCTGC
GGGCTCTGACCAGGTCCTGTTTTTGTTCTACTCCAGGCAGCGACAGTGCCCAGGGCTCTGATGTGTCTCTCACAGCTTGA
AAAGGTGAGATTCTTGGGGTCTAGAGTGGGTGGGGTGGCGGGTCTGGGGGTGGGTGGGGCAGAGGGGAAAGGCCTGGGTA
ATGGGGATTCTTTGATTGGGATGTTTCGCGTGTGTGGTGGGCTGTTTAGAGTGTCATCGCTTACCATGACTAACCAGAAT
TTGTTCATGACTGTTGTTTTCTGTAGCCTGAGACAGCTGTCTTGTGAGGGACTGAGATGCAGGATTTCTTCACGCCTCCC
CTTTGTGACTTCAAGAGCCTCTGGCATCTCTTTCTGCAAAGGCACCTGAATGTGTCTGCGTCCCTGTTAGCATAATGTGA
GGAGGTGGAGAGACAGCCCACCCT

IMGT/HLA

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