Garcia-Gonzalez Irene, Gambera Stefano, Rocha Susana F, Regano Alvaro, Garcia-Ortega Lourdes, Lytvyn Mariya, Diago-Domingo Luis, Sanchez-Muñoz Maria S, Garcia-Cabero Aroa, Zagorac Ivana, Luo Wen, De Andrés-Laguillo Macarena, Fernández-Chacón Macarena, Casquero-Garcia Verónica, Lunella Federica Francesca, Torroja Carlos, Sánchez-Cabo Fátima, Benedito Rui
Molecular Genetics of Angiogenesis Group, Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.
Bioinformatics Unit, Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.
Nat Methods. 2025 Feb;22(2):323-334. doi: 10.1038/s41592-024-02534-w. Epub 2024 Dec 13.
To understand gene function, it is necessary to compare cells carrying the mutated target gene with normal cells. In most biomedical studies, the cells being compared are in different mutant and control animals and, therefore, do not experience the same epigenetic changes and tissue microenvironment. The experimental induction of genetic mosaics is essential to determine a gene cell-autonomous function and to model the etiology of diseases caused by somatic mutations. Current technologies used to induce genetic mosaics in mice lack either accuracy, throughput or barcoding diversity. Here we present the iFlpMosaics toolkit comprising a large set of new genetic tools and mouse lines that enable recombinase-dependent ratiometric induction and single-cell clonal tracking of multiple fluorescently labeled wild-type and Cre-mutant cells within the same time window and tissue microenvironment. The labeled cells can be profiled by multispectral imaging or by fluorescence-activated flow cytometry and single-cell RNA sequencing. iFlpMosaics facilitate the induction and analysis of genetic mosaics in any quiescent or progenitor cell, and for any given single or combination of floxed genes, thus enabling a more accurate understanding of how induced genetic mutations affect the biology of single cells during tissue development, homeostasis and disease.
为了解基因功能,有必要将携带突变靶基因的细胞与正常细胞进行比较。在大多数生物医学研究中,被比较的细胞存在于不同的突变动物和对照动物中,因此不会经历相同的表观遗传变化和组织微环境。基因镶嵌体的实验诱导对于确定基因的细胞自主功能以及模拟由体细胞突变引起的疾病病因至关重要。目前用于在小鼠中诱导基因镶嵌体的技术要么缺乏准确性,要么缺乏通量,要么缺乏条形码多样性。在这里,我们展示了iFlpMosaics工具包,它包含大量新的遗传工具和小鼠品系,能够在同一时间窗口和组织微环境内对多个荧光标记的野生型和Cre突变细胞进行重组酶依赖性比例诱导和单细胞克隆追踪。标记的细胞可以通过多光谱成像、荧光激活流式细胞术或单细胞RNA测序进行分析。iFlpMosaics有助于在任何静止或祖细胞中对任何给定的单个或组合的floxed基因进行基因镶嵌体的诱导和分析,从而更准确地了解诱导的基因突变在组织发育、稳态和疾病过程中如何影响单个细胞的生物学特性。