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Allospecificities between HLA-Bw53 and HLA-B35 are generated by substitution of the residues associated with HLA-Bw4/Bw6 public epitopes.

作者信息

Hayashi H, Ooba T, Nakayama S, Sekimata M, Kano K, Takiguchi M

机构信息

Department of Immunology, University of Tokyo, Japan.

出版信息

Immunogenetics. 1990;32(3):195-9. doi: 10.1007/BF02114973.

DOI:10.1007/BF02114973
PMID:1699887
Abstract
摘要

相似文献

1
Allospecificities between HLA-Bw53 and HLA-B35 are generated by substitution of the residues associated with HLA-Bw4/Bw6 public epitopes.HLA - Bw53与HLA - B35之间的同种特异性是由与HLA - Bw4/Bw6公共表位相关的残基替代所产生的。
Immunogenetics. 1990;32(3):195-9. doi: 10.1007/BF02114973.
2
T cell can recognize the allospecificities formed by the substitution of amino acids associated with HLA-Bw4/Bw6 public epitopes.T细胞能够识别由与HLA - Bw4/Bw6公共表位相关的氨基酸替代所形成的同种特异性。
Hum Immunol. 1991 Sep;32(1):41-5. doi: 10.1016/0198-8859(91)90115-p.
3
Sequence analysis of HLA-Bw53, a common West African allele, suggests an origin by gene conversion of HLA-B35.对常见的西非等位基因HLA - Bw53进行序列分析表明,它起源于HLA - B35的基因转换。
Hum Immunol. 1991 Feb;30(2):105-9. doi: 10.1016/0198-8859(91)90078-n.
4
Genetic and serological heterogeneity of the supertypic HLA-B locus specificities Bw4 and Bw6.超型HLA - B位点特异性Bw4和Bw6的遗传和血清学异质性。
Immunogenetics. 1989;30(3):200-7. doi: 10.1007/BF02421207.
5
Unexpected Bw4 and Bw6 reactivity patterns in new alleles.新等位基因中意外的Bw4和Bw6反应模式。
Tissue Antigens. 2000 Oct;56(4):363-70. doi: 10.1034/j.1399-0039.2000.560409.x.
6
Bw4-reactive and Bw6-reactive antibodies recognize multiple distinct HLA structures that partially overlap in the alpha-1 helix.Bw4反应性抗体和Bw6反应性抗体识别多种不同的HLA结构,这些结构在α-1螺旋中部分重叠。
J Immunol. 1994 Nov 1;153(9):4099-110.
7
Serological demonstration of HLA-Bw4/Bw6 epitopes on hybrid molecules between HLA-B35 and HLA-B51.HLA-B35与HLA-B51杂交分子上HLA-Bw4/Bw6表位的血清学证明
Immunogenetics. 1989;30(3):229-31. doi: 10.1007/BF02421213.
8
Allodeterminants and evolution of a novel HLA-B5 CREG antigen, HLA-B SNA.一种新型HLA - B5 CREG抗原HLA - B SNA的同种异体决定簇与进化
J Immunol. 1990 Apr 15;144(8):3228-33.
9
The primary structure of HLA-A32 suggests a region involved in formation of the Bw4/Bw6 epitopes.HLA - A32的一级结构表明存在一个参与Bw4/Bw6表位形成的区域。
J Immunol. 1986 Dec 1;137(11):3671-4.
10
The role of the amino acids associated with the HLA-Bw4/Bw6 epitope in peptide binding to HLA-B5, B35 CREG molecules.与HLA - Bw4/Bw6表位相关的氨基酸在肽与HLA - B5、B35 CREG分子结合中的作用。
Immunogenetics. 1999 Aug;49(9):819-22. doi: 10.1007/s002510050558.

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A genetic fingerprint associated with durable HIV remission after interruption of antiretroviral treatment: ANRS VISCONTI/PRIMO.抗逆转录病毒治疗中断后与持久HIV缓解相关的基因指纹:ANRS VISCONTI/PRIMO研究。
Med. 2025 Aug 8;6(8):100670. doi: 10.1016/j.medj.2025.100670. Epub 2025 Apr 28.
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Host genetic and viral determinants of HIV-1 RNA set point among HIV-1 seroconverters from sub-saharan Africa.撒哈拉以南非洲地区HIV-1血清转化者中HIV-1 RNA设定值的宿主基因和病毒决定因素。
J Virol. 2015 Feb;89(4):2104-11. doi: 10.1128/JVI.01573-14. Epub 2014 Dec 3.
3
Contrasting roles of interallelic recombination at the HLA-A and HLA-B loci.

本文引用的文献

1
HLA-A and B polymorphisms predate the divergence of humans and chimpanzees.HLA - A和B基因多态性在人类和黑猩猩分化之前就已存在。
Nature. 1988 Sep 15;335(6187):268-71. doi: 10.1038/335268a0.
2
The complete primary structure of HLA-Bw58.HLA - Bw58的完整一级结构。
J Biol Chem. 1985 Oct 5;260(22):11924-33.
3
HLA-B51 and HLA-Bw52 differ by only two amino acids which are in the helical region of the alpha 1 domain.HLA - B51和HLA - Bw52仅在α1结构域螺旋区域的两个氨基酸上存在差异。
HLA - A和HLA - B基因座上等位基因间重组的不同作用。
Genetics. 1993 Mar;133(3):669-80. doi: 10.1093/genetics/133.3.669.
4
Different rates of HLA class I molecule assembly which are determined by amino acid sequence in the alpha 2 domain.由α2结构域中的氨基酸序列决定的不同HLA I类分子组装速率。
Immunogenetics. 1993;37(2):95-101. doi: 10.1007/BF00216831.
5
Nomenclature for factors of the HLA system, 1990. The WHO Nomenclature Committee for factors of the HLA system.1990年HLA系统因子命名法。世界卫生组织HLA系统因子命名委员会。
Immunogenetics. 1991;33(5-6):301-9. doi: 10.1007/BF00216689.
6
Two amino acid substitutions at residues 63 and 67 between HLA-B51 and HLA-Bw52 form multiple epitopes recognized by allogeneic T cells.HLA - B51和HLA - Bw52之间第63位和第67位残基处的两个氨基酸替换形成了多个被同种异体T细胞识别的表位。
Immunogenetics. 1991;33(4):286-9. doi: 10.1007/BF00230508.
7
Two subtypes of HLA-B51 differing by substitution at position 171 of the alpha 2 helix.HLA - B51的两种亚型,它们在α2螺旋的第171位存在替换差异。
Immunogenetics. 1992;37(1):57-63. doi: 10.1007/BF00223545.
J Immunol. 1989 Jan 1;142(1):306-11.
4
The structure of HLA-B35 suggests that it is derived from HLA-Bw58 by two genetic mechanisms.
Immunogenetics. 1989;30(2):76-80. doi: 10.1007/BF02421534.
5
Genetic and serological heterogeneity of the supertypic HLA-B locus specificities Bw4 and Bw6.超型HLA - B位点特异性Bw4和Bw6的遗传和血清学异质性。
Immunogenetics. 1989;30(3):200-7. doi: 10.1007/BF02421207.
6
Serological demonstration of HLA-Bw4/Bw6 epitopes on hybrid molecules between HLA-B35 and HLA-B51.HLA-B35与HLA-B51杂交分子上HLA-Bw4/Bw6表位的血清学证明
Immunogenetics. 1989;30(3):229-31. doi: 10.1007/BF02421213.
7
The primary structure of HLA-A32 suggests a region involved in formation of the Bw4/Bw6 epitopes.HLA - A32的一级结构表明存在一个参与Bw4/Bw6表位形成的区域。
J Immunol. 1986 Dec 1;137(11):3671-4.
8
Allodeterminants and evolution of a novel HLA-B5 CREG antigen, HLA-B SNA.一种新型HLA - B5 CREG抗原HLA - B SNA的同种异体决定簇与进化
J Immunol. 1990 Apr 15;144(8):3228-33.