首页> 美国卫生研究院文献>Cellular and Molecular Immunology >Construction of Soluble Mamu-B*1703 a Class I Major Histocompatibility Complex of Chinese Rhesus Macaques Monomer and Tetramer Loaded with a Simian Immunodeficiency Virus Peptide
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Construction of Soluble Mamu-B*1703 a Class I Major Histocompatibility Complex of Chinese Rhesus Macaques Monomer and Tetramer Loaded with a Simian Immunodeficiency Virus Peptide

机译:猿猴免疫缺陷病毒肽加载的中国猕猴单体和四聚体I类主要组织相容性复合物可溶性Mamu-B * 1703的构建

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摘要

Chinese-descent rhesus macaques have become more prevalent for HIV infection and vaccine investigation than Indian-origin macaques. Most of the currently available data and reagents such as major histocompatibility complex (MHC) class I tetramers, however, were derived from Indian-origin macaques due to the dominant use of these animals in history. Although there are significant differences in the immunogenetic background between the two macaque populations, they share a few of common MHC class I alleles. We reported in this study the procedure for preparation of a soluble Mamu-B*1703 (a MHC class I molecule of Chinese macaques) monomer and tetramer loaded with a dominant simian immunodeficiency virus (SIV) epitope IW9 (IRYPKTFGW) that was identified to be Mamu-B*1701-restricted in Indian macaques. The DNA fragment encoding the Mamu-B*1703 extracellular domain fused with a BirA substrate peptide (BSP) was amplified from a previously cloned cDNA and inserted into a prokaratic expression vector. In the presence of the antigenic peptide IW9 and light chain β2-microglobulin, the expressed heavy chain was refolded into a soluble monomer. After biotinylation, four monomers were polymerized as a tetramer by phycoerythrin-conjugated streptavidin. The tetramer, having been confirmed to have the right conformation, was a potential tool for investigation of antigen-specific CD8+ T-lymphocytes in SIV vaccine models of Chinese macaques. And our results also suggested that some antigenic peptides reported in Indian-origin macaques could be directly recruited as ligands for construction of Chinese macaque MHC tetramers.
机译:与印度血统的猕猴相比,华裔的猕猴在艾滋病毒感染和疫苗研究中更为普遍。但是,由于历史上这些动物的主要用途,大多数当前可用的数据和试剂(例如主要组织相容性复合物(MHC)I类四聚体)均源自印度猕猴。尽管两个猕猴种群的免疫遗传背景存在显着差异,但它们共享一些常见的MHC I类等位基因。我们在这项研究中报告了制备载有主要猿猴免疫缺陷病毒(SIV)表位IW9(MHC I类分子的中国猕猴)单体和四聚体的可溶性Mamu-B * 1703的程序。 IRYPKTFGW)在印度猕猴中被确定为Mamu-B * 1701限制性酶。从先前克隆的cDNA中扩增编码与BirA底物肽(BSP)融合的Mamu-B * 1703胞外域的DNA片段,并将其插入原核表达载体中。在抗原肽IW9和轻链β2-微球蛋白的存在下,表达的重链被重折叠成可溶性单体。生物素化后,通过藻红蛋白缀合的链霉亲和素将四种单体聚合成四聚体。四聚体已被证实具有正确的构象,是研究中国猕猴SIV疫苗模型中抗原特异性CD8 + T淋巴细胞的潜在工具。我们的研究结果还表明,在印度起源的猕猴中报道的某些抗原性肽可以直接募集为构建中国猕猴MHC四聚体的配体。

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