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Genotyping Single Nucleotide Polymorphisms (SNPs) and Copy Number Variability (CNV) of the FCGRs (FCGR3A and FCGR2C) expressed on NK cells

机译:基因型单核苷酸多态性(SNPs)和在NK细胞上表达的FCGR(FCGR3A和FCGR2C)的拷贝数变异(CNV)

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摘要

Natural Killer cells (NK cells) are one of the main effector immune cells involved in Antibody-Dependent Cell-mediated Cytotoxicity (ADCC). Upon recognition of cell bound IgG antibodies, which occurs through Fc gamma receptors (FCGRs) expressed on the cell surface of NK cells, NK cells become activated and lyse target tumor or infected cells. The FCGRs, FCGR3A and FCGR2C, expressed on the surface of NK cells have single nucleotide polymorphisms (SNPs) that result in differential activity of NK cells. In addition to SNP genetic variation within each of these genes, the FCGRs are subject to copy number variation (CNV), which leads to variable protein expression levels on the cell surface. Studies have found that FCGR genotype for FCGR3A and FCGR2C is associated with variation in the response to immunotherapy.Due to high sequence homology within FCGR3 and FCGR2 families, there are difficulties associated with genotyping these specific receptors related to cross-amplification of non-targeted FCGRs. To improve specificity for both FCGR3A and FCGR2C, Rnase-H primers (RH primers) were designed to amplify specifically FCGR3A (while not co-amplifying FCGR3B) and FCGR2C (while not co-amplifying FCGR2B). In addition, fluorescently labeled Locked Nucleic Acid (LNA) probes provide additional precision for determination of the SNPs within both FCGR3A and FCGR2C. For CNV determination, separate fluorescently labeled probes for FCGR3A, and for FCGR2C, can be used with the same RH primers for each gene. These probes can be combined in the same well with control primers/probe for a known diploid gene and used to calculate the copy number of both FCGR3A and FCGR2C. Here we provide new detailed methodology that allows for the specific amplification of these FCGRs in a single PCR reaction, allowing for genotyping of both the SNPs and CNVs using Real Time PCR.
机译:天然杀伤细胞(NK细胞)是涉及抗体依赖性细胞介导的细胞毒性(ADCC)的主要效应免疫细胞之一。识别通过NK细胞细胞表面表达的Fcγ受体(FCGR)发生的细胞结合IgG抗体后,NK细胞被激活并裂解靶肿瘤或被感染的细胞。在NK细胞表面表达的FCGR,FCGR3A和FCGR2C具有单核苷酸多态性(SNP),导致NK细胞活性差异。除了这些基因中每个基因的SNP遗传变异外,FCGR还会受到拷贝数变异(CNV)的影响,这会导致细胞表面蛋白质表达水平的变化。研究发现,FCGR3A和FCGR2C的FCGR基因型与免疫治疗反应的变化有关。由于FCGR3和FCGR2家族之间具有高度序列同源性,因此难以对与非靶向FCGR交叉扩增有关的这些特定受体进行基因分型。为了提高对FCGR3A和FCGR2C的特异性,设计了Rnase-H引物(RH引物)来特异性扩增FCGR3A(不共同扩增FCGR3B)和FCGR2C(而不共同扩增FCGR2B)。此外,荧光标记的锁定核酸(LNA)探针为测定FCGR3A和FCGR2C内的SNP提供了更高的精度。对于CNV测定,可以对FCGR3A和FCGR2C使用单独的荧光标记探针,并对每个基因使用相同的RH引物。这些探针可以与已知二倍体基因的对照引物/探针结合在同一孔中,并用于计算 FCGR3A FCGR2C 的拷贝数。在这里,我们提供了一种新的详细方法,可以在单个PCR反应中特异性扩增这些 FCGR ,并允许使用实时PCR对SNP和CNV进行基因分型。

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