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采用终点 PCR 和凝胶电泳对 JAXBoy(CD45.1)和 C57BL/6J(CD45.2)小鼠进行单管 Ptprc SNP 基因分型。

Single-tube Ptprc SNP genotyping of JAXBoy (CD45.1) and C57BL/6J (CD45.2) mice by endpoint PCR and gel electrophoresis.

机构信息

Department of Pathology, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.

Gates Institute Summer Internship Program (GSIP), University of Colorado Anschutz Medical Campus, Aurora, CO, USA.

出版信息

Mol Cell Probes. 2024 Jun;75:101962. doi: 10.1016/j.mcp.2024.101962. Epub 2024 May 6.

Abstract

Allelic variation at the Ptprc gene, which encodes the pan-leukocyte marker CD45/Ly5, is commonly exploited to track hematopoietic reconstitution by flow cytometry in mixed bone marrow chimera transplant experiments. Historically, this was accomplished using bone marrow from C57BL/6 (Ptprc/CD45.2/Ly5.2) and congenic B6.SJL-PtprcPepc/Boy (Ptprc/CD45.1/Ly5.1) mice. Recently, the Jackson Laboratory directly CRISPR-engineered the Ptprc allele in C57BL/6J mice. This new isogenic strain, termed JAXBoy, differs from wild-type C57BL/6J mice by two nucleotides, compared to the biologically significant 37 megabase (Mb) SJL interval retained in B6.SJL-PtprcPepc/Boy/J mice. Currently, Ptprc/CD45 variants are identified by flow cytometry or allele-specific real-time PCR, both of which require specialized workflows and equipment compared to standard genotyping of endpoint PCR products by gel electrophoresis. Here, we employed allele-specific oligonucleotides in conjunction with differential incorporation of a long non-specific oligo 5'-tail to allow for simultaneous identification of the Ptprc and Ptprc alleles using endpoint PCR and gel electrophoresis. This method allows for integration of Ptprc genotyping into standard genotyping workflows, which use a single set of thermocycling and gel electrophoresis conditions. Importantly, the strategy of primer placement and tail addition described here can be adapted to discriminate similar single- or multi-nucleotide polymorphisms at other genomic loci.

摘要

Ptprc 基因的等位基因变异,该基因编码泛白细胞标记物 CD45/Ly5,常用于通过流式细胞术追踪混合骨髓嵌合体移植实验中的造血重建。历史上,这是通过使用 C57BL/6(Ptprc/CD45.2/Ly5.2)和同源 B6.SJL-PtprcPepc/Boy(Ptprc/CD45.1/Ly5.1)骨髓来完成的。最近,杰克逊实验室直接在 C57BL/6J 小鼠中对 Ptprc 等位基因进行了 CRISPR 工程改造。这种新的同基因品系,称为 JAXBoy,与野生型 C57BL/6J 小鼠相比,有两个核苷酸不同,而在 B6.SJL-PtprcPepc/Boy/J 小鼠中保留了有生物学意义的 37 兆碱基(Mb)SJL 间隔。目前,Ptprc/CD45 变体通过流式细胞术或等位基因特异性实时 PCR 来鉴定,这两种方法都需要专门的工作流程和设备,而不是通过凝胶电泳对终点 PCR 产物进行标准基因分型。在这里,我们使用了等位基因特异性寡核苷酸,并结合了长非特异性寡核苷酸 5'-尾的差异掺入,以便使用终点 PCR 和凝胶电泳同时鉴定 Ptprc 和 Ptprc 等位基因。该方法允许将 Ptprc 基因分型整合到使用单个热循环和凝胶电泳条件的标准基因分型工作流程中。重要的是,此处描述的引物放置和尾添加策略可以适应在其他基因组位置区分类似的单核苷酸或多核苷酸多态性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/778a/11146669/5392a663ff6b/nihms-1997095-f0001.jpg

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