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杂交Ia抗原:遗传学、血清学及生物化学分析

Hybrid Ia antigens: genetic, serologic, and biochemical analyses.

作者信息

Lafuse W P, Yokota S, David C S

出版信息

J Supramol Struct. 1980;14(1):97-106. doi: 10.1002/jss.400140110.

DOI:10.1002/jss.400140110
PMID:6163928
Abstract

Ia specificities 22 and 23 were found to be determinants on hybrid Ia molecules, formed by the noncovalent binding of a 26,000--28,000 dalton beta polypeptide chain (Ae) coded by the I-A subregion and a 32,000--35,000 dalton alpha chain (E alpha) coded by the I-E subregion. For expression of Ia.23 the Ae chain, coded by the I-A subregion, must be derived from the H-2d haplotype, while Ab, As, or Ak can provide the complementing beta chain for the expression of Ia.22. For expression of Ia.22 and Ia.23, most Ia.7 positive strains can provide the complementing alpha chain (E alpha), with the one exception of B10.PL (Eu), which is Ia.7 positive but will not complement with Ad to express Ia.23. Antisera were also produced against hybrid Ia antigens by immunizing with F1 cells expressing Ia.22 or Ia.23 generated by generated by trans-complementation. These antisera detect the same specificities as conventional anti-Ia.22 and anti-Ia.23 sera produced against cis-complementing Ia antigens. It is postulated that hybrid Ia determinants are involved in recognition and generation of immune response to antigens under dual Ir gene control. It is also suggested that there are 2 types of Ia specificities: 1) allotypic Ia specificities expressed on the alpha or beta chains (for example, Ia.7 on the E alpha chain) and 2) hybrid Ia specificities, which are unique interaction determinants formed by the association of alpha and beta chains (for example, Ia.22 and Ia.23). These interaction gene products may be involved in antigen recognition and presentation.

摘要

Ia特异性22和23被发现是杂交Ia分子的决定因素,这些杂交Ia分子由I-A亚区编码的26,000 - 28,000道尔顿的β多肽链(Ae)与I-E亚区编码的32,000 - 35,000道尔顿的α链(Eα)通过非共价结合形成。对于Ia.23的表达,由I-A亚区编码的Ae链必须源自H-2d单倍型,而Ab、As或Ak可以为Ia.22的表达提供互补的β链。对于Ia.22和Ia.23的表达,大多数Ia.7阳性菌株可以提供互补的α链(Eα),唯一的例外是B10.PL(Eu),它是Ia.7阳性但不会与Ad互补以表达Ia.23。通过用经反式互补产生的表达Ia.22或Ia.23的F1细胞免疫,也产生了针对杂交Ia抗原的抗血清。这些抗血清检测到的特异性与针对顺式互补Ia抗原产生的传统抗Ia.22和抗Ia.23血清相同。据推测,杂交Ia决定因素参与在双重Ir基因控制下对抗原的免疫应答的识别和产生。还表明存在两种类型的Ia特异性:1)在α或β链上表达的同种异型Ia特异性(例如,Eα链上的Ia.7)和2)杂交Ia特异性,它们是由α链和β链的缔合形成的独特相互作用决定因素(例如,Ia.22和Ia.23)。这些相互作用基因产物可能参与抗原识别和呈递。

相似文献

1
Hybrid Ia antigens: genetic, serologic, and biochemical analyses.杂交Ia抗原:遗传学、血清学及生物化学分析
J Supramol Struct. 1980;14(1):97-106. doi: 10.1002/jss.400140110.
2
Gene complementations to generate Ia antigens (Ia.23) on hybrid molecules.基因互补作用以在杂交分子上产生Ia抗原(Ia.23)。
Transplantation. 1980 Nov;30(5):341-6. doi: 10.1097/00007890-198011000-00007.
3
Clonal analysis of B and T cell responses to Ia antigens. IV. Proliferative T cell clones recognizing E beta and/or E alpha allodeterminants.B细胞和T细胞对Ia抗原反应的克隆分析。IV. 识别Eβ和/或Eα同种异体决定簇的增殖性T细胞克隆。
J Immunol. 1983 Mar;130(3):1262-7.
4
Hybrid (combinatorial) Ia specificities: gene complementations to generate Ia.22.杂种(组合性)Ia特异性:基因互补以产生Ia.22 。
Immunogenetics. 1981;13(1-2):115-25. doi: 10.1007/BF00524609.
5
Delineation of Ia:nominal antigen complementary determinants recognized by T cells in studies of gene complementation in response to insulin.Ia的描绘:在胰岛素反应基因互补研究中T细胞识别的名义抗原互补决定簇。
J Immunol. 1984 Jan;132(1):303-9.
6
The structure-function relationship of I-A molecules: a biochemical analysis of I-A polypeptides from mutant antigen-presenting cells and evidence of preferential association of allelic forms.I-A分子的结构-功能关系:来自突变抗原呈递细胞的I-A多肽的生化分析及等位基因形式优先关联的证据
J Immunol. 1985 Sep;135(3):1945-54.
7
Serologic and biochemical analyses of a variant Ae (E beta) ia polypeptide chain in D2.gD (H-2g2).对D2.gD(H-2g2)中一种变异的Ae(Eβ)ia多肽链的血清学和生化分析。
J Immunol. 1981 Aug;127(2):811-3.
8
A single monoclonal anti-Ia antibody inhibits antigen-specific T cell proliferation controlled by distinct Ir genes mapping in different H-2 I subregions.一种单克隆抗Ia抗体可抑制由位于不同H-2 I亚区的不同Ir基因所控制的抗原特异性T细胞增殖。
J Immunol. 1982 Mar;128(3):1409-13.
9
Ia specificities on parental and hybrid cells of an I-A mutant mouse strain.I-A突变小鼠品系亲代细胞和杂交细胞上的Ia特异性
J Immunol. 1981 Dec;127(6):2228-31.
10
Biochemical evidence for trans complementation of structural genes in the expression of I-E antigens in F1 hybrids.F1杂种中I-E抗原表达时结构基因反式互补的生化证据。
J Immunol. 1981 Oct;127(4):1679-85.