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对小鼠减数分裂和有丝分裂重组缺陷突变体进行正向遗传学筛选。

Forward genetic screens for meiotic and mitotic recombination-defective mutants in mice.

作者信息

Reinholdt Laura, Ashley Terry, Schimenti John, Shima Naoko

机构信息

The Jackson Laboratory, Bar Harbor, ME, USA.

出版信息

Methods Mol Biol. 2004;262:87-107. doi: 10.1385/1-59259-761-0:087.

Abstract

The goal of understanding the function of all mammalian genes is best accomplished through mutational analyses. Although the sequence of the mouse genome is now available and many genes have been identified, it is not possible to ascribe functions accurately to these genes in silico. Gene targeting using embryonic stem cells is ideal for analysis of individual genes selected on the basis of sequence features, but it is impractical for identifying novel genes involved in particular biological processes. Phenotype-based random mutagenesis of the genome is well suited for this goal. In the mouse, N-ethyl-N-nitrosourea (ENU) induces point mutations at a high frequency in the mouse germline. In this chapter, we describe methods for detecting and characterizing recombination mutations in mice produced by ENU mutagenesis. Potential meiotic recombination mutants are identified in a hierarchical fashion, by performing a screen for infertility, then gonad histology to determine whether meiotic arrest occurs, and finally by immunohistochemical analysis of meiotic chromosome with a battery of antibody markers. Screening for mutations potentially required for recombinational repair of DNA damage in somatic cells is performed using a flow cytometry-based micronucleus assay. Both strategies have proved effective in identifying desired classes of mutations.

摘要

了解所有哺乳动物基因功能的目标最好通过突变分析来实现。尽管小鼠基因组序列现已可得且许多基因已被鉴定,但要在计算机上准确赋予这些基因功能是不可能的。利用胚胎干细胞进行基因打靶对于分析基于序列特征选择的单个基因很理想,但对于鉴定参与特定生物学过程的新基因却不切实际。基于表型的基因组随机诱变非常适合这一目标。在小鼠中,N-乙基-N-亚硝基脲(ENU)在小鼠种系中高频诱导点突变。在本章中,我们描述了检测和表征由ENU诱变产生的小鼠中重组突变的方法。潜在的减数分裂重组突变体通过分层方式进行鉴定,先进行不育筛选,然后进行性腺组织学检查以确定是否发生减数分裂停滞,最后用一系列抗体标记物对减数分裂染色体进行免疫组织化学分析。使用基于流式细胞术的微核试验对体细胞中DNA损伤重组修复可能所需的突变进行筛选。这两种策略在鉴定所需类型的突变方面都已证明是有效的。

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