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体内大鼠T淋巴细胞Pig-a检测:GPI锚定的CD48表面标志物缺陷细胞的检测与扩增,用于分析内源性Pig-a基因突变

In Vivo Rat T-Lymphocyte Pig-a Assay: Detection and Expansion of Cells Deficient in the GPI-Anchored CD48 Surface Marker for Analysis of Mutation in the Endogenous Pig-a Gene.

作者信息

Dobrovolsky Vasily N, Revollo Javier, Petibone Dayton M, Heflich Robert H

机构信息

Division of Genetic and Molecular Toxicology, National Center for Toxicological Research, US Food and Drug Administration, 3900 NCTR Rd., HFT-120, Jefferson, AR, 72079, USA.

出版信息

Methods Mol Biol. 2017;1641:143-160. doi: 10.1007/978-1-4939-7172-5_7.

Abstract

The Pig-a assay is being developed as an in vivo gene mutation assay for regulatory safety assessments. The assay is based on detecting mutation in the endogenous Pig-a gene of treated rats by using flow cytometry to measure changes in cell surface markers of peripheral blood cells. Here we present a methodology for demonstrating that phenotypically mutant rat T-cells identified by flow cytometry contain mutations in the Pig-a gene, an important step for validating the assay. In our approach, the mutant phenotype T-cells are sorted into individual wells of 96-well plates and expanded into clones. Subsequent sequencing of genomic DNA from the expanded clones confirms that the Pig-a assay detects exactly what it claims to detect-cells with mutations in the endogenous Pig-a gene. In addition, determining the spectra of Pig-a mutations provides information for better understanding the mutational mechanism of compounds of interest. Our methodology of combining phenotypic antibody labeling, magnetic enrichment, sorting, and single-cell clonal expansion can be used in genotoxicity/mutagenicity studies and in other general immunotoxicology research requiring identification, isolation, and expansion of extremely rare subpopulations of T-cells.

摘要

Pig-a 试验正在作为一种用于监管安全性评估的体内基因突变试验进行开发。该试验基于通过流式细胞术检测经处理大鼠内源性 Pig-a 基因的突变,以测量外周血细胞表面标志物的变化。在此,我们提出一种方法,用于证明通过流式细胞术鉴定的表型突变大鼠 T 细胞在 Pig-a 基因中存在突变,这是验证该试验的重要一步。在我们的方法中,将突变表型 T 细胞分选到 96 孔板的各个孔中并扩增成克隆。随后对扩增克隆的基因组 DNA 进行测序,证实 Pig-a 试验确实检测到了它所声称要检测的东西——内源性 Pig-a 基因发生突变的细胞。此外,确定 Pig-a 突变谱可为更好地理解感兴趣化合物的突变机制提供信息。我们将表型抗体标记、磁性富集、分选和单细胞克隆扩增相结合的方法可用于遗传毒性/诱变性研究以及其他需要鉴定、分离和扩增极其罕见 T 细胞亚群的一般免疫毒理学研究。

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