Zheng Lei, Njauw Ching-Ni, Martins-Green Manuela
Department of Cell Biology and Neurosciences, University of California Riverside, Riverside, CA 92521, USA.
J Leukoc Biol. 2007 Nov;82(5):1247-56. doi: 10.1189/jlb.0307141. Epub 2007 Aug 17.
To address the functions of human CXCL8 (hCXCL8)/IL-8 through hCXCR1 in vivo, we have developed a humanized, transgenic mouse for hCXCR1. This mouse line is versatile and allows for a variety of functional analyses using bioimaging, including Cre/loxP-mediated, tissue-specific hCXCR1 expression in a spatiotemporal manner; a color-switching mechanism, which uses spectrum-complementary, genetically encoded green and red fluorescence markers to label the hCXCR1-expressing cells [enhanced GFP (eGFP)] against the background [monomeric red fluorescent protein (mRFP)]; a bioluminescent marker, which is present in the hCXCR1-expressing cells; and an exogenous cell surface marker (eGFP moiety) in the hCXCR1-expressing cells, which facilitates identification, isolation, and targeting of these cells. The established, transgenic founder line RCLG3A (TG(+)) expresses only mRFP and does so ubiquitously. When the RCLG3A mice are crossed with the tamoxifen-inducible, whole-tissue Cre mice (ROSA26-Cre/Esr(+/-)), administration of tamoxifen induces whole-body hCXCR1 expression and color-switching. When RCLG3A mice are crossed with thymocyte-specific Cre mice (Lck-Cre(+/+)), the hCXCR1 expression and color-switching are restricted in a lineage-specific manner. This mouse line can be used to understand the functions of hCXCL-8 in vivo. In addition, our approach and vectors can be used to establish other tissue-specific, transgenic mice in conjunction with multifunctional cell markers, which facilitate cell imaging, tracing, and manipulation in vivo.
为了在体内通过人CXCR1研究人CXCL8(hCXCL8)/白细胞介素-8(IL-8)的功能,我们构建了一种人源化的hCXCR1转基因小鼠。该小鼠品系用途广泛,可通过生物成像进行多种功能分析,包括利用Cre/loxP介导的组织特异性hCXCR1在时空上的表达;一种颜色转换机制,该机制使用光谱互补的、基因编码的绿色和红色荧光标记,以背景(单体红色荧光蛋白,mRFP)为对照标记表达hCXCR1的细胞[增强型绿色荧光蛋白(eGFP)];一种生物发光标记,存在于表达hCXCR1的细胞中;以及表达hCXCR1的细胞中的外源性细胞表面标记(eGFP部分),这有助于对这些细胞进行识别、分离和靶向。已建立的转基因奠基系RCLG3A(TG(+))仅普遍表达mRFP。当RCLG3A小鼠与他莫昔芬诱导型全组织Cre小鼠(ROSA26-Cre/Esr(+/-))杂交时,给予他莫昔芬可诱导全身hCXCR1表达和颜色转换。当RCLG3A小鼠与胸腺细胞特异性Cre小鼠(Lck-Cre(+/+))杂交时,hCXCR1表达和颜色转换以谱系特异性方式受到限制。该小鼠品系可用于了解体内hCXCL-8的功能。此外,我们的方法和载体可用于结合多功能细胞标记物建立其他组织特异性转基因小鼠,这有助于体内细胞成像、追踪和操作。