Lu Pengfei, Ewald Andrew J, Martin Gail R, Werb Zena
Department of Anatomy and Program in Developmental Biology, University of California at San Francisco, San Francisco, CA 94143-0452, USA.
Dev Biol. 2008 Sep 1;321(1):77-87. doi: 10.1016/j.ydbio.2008.06.005. Epub 2008 Jun 13.
FGF signaling is associated with breast cancer and is required for mammary placode formation in the mouse. In this study, we employed a genetic mosaic analysis based on Cre-mediated recombination to investigate FGF receptor 2 (Fgfr2) function in the postnatal mammary gland. Mosaic inactivation of Fgfr2 by the MMTV-Cre transgene enabled us to compare the behavior of Fgfr2 null and Fgfr2 heterozygous cells in the same gland. Fgfr2 null cells were at a competitive disadvantage to their Fgfr2 heterozygous neighbors in the highly proliferative terminal end buds (TEBs) at the invasion front, owing to a negative effect of loss of Fgfr2 function on cell proliferation. However, Fgfr2 null cells were tolerated in mature ducts. In these genetic mosaic mammary glands, the epithelial network is apparently built by TEBs that over time are composed of a progressively larger proportion of Fgfr2-positive cells. However, subsequently, most cells lose Fgfr2 function, presumably due to additional rounds of Cre-mediated recombination. Using an independent strategy to create mosaic mammary glands, which employed an adenovirus-Cre that acts only once, we confirmed that Fgfr2 null cells were out-competed by neighboring Fgfr2 heterozygous cells. Together, our data demonstrate that Fgfr2 functions in the proliferating and invading TEBs, but it is not required in the mature ducts of the pubertal mammary gland.
FGF信号传导与乳腺癌相关,且在小鼠乳腺基板形成过程中是必需的。在本研究中,我们采用基于Cre介导的重组的遗传镶嵌分析来研究出生后乳腺中FGF受体2(Fgfr2)的功能。通过MMTV-Cre转基因对Fgfr2进行镶嵌失活,使我们能够在同一腺体中比较Fgfr2缺失细胞和Fgfr2杂合细胞的行为。由于Fgfr2功能丧失对细胞增殖的负面影响,Fgfr2缺失细胞在侵袭前沿高度增殖的终末芽(TEB)中与其Fgfr2杂合邻居相比处于竞争劣势。然而,Fgfr2缺失细胞在成熟导管中是可以耐受的。在这些遗传镶嵌乳腺中,上皮网络显然是由TEB构建的,随着时间的推移,TEB中Fgfr2阳性细胞的比例逐渐增加。然而,随后,大多数细胞失去Fgfr2功能,推测是由于额外的Cre介导的重组轮次。使用一种独立的策略来创建镶嵌乳腺,该策略采用仅作用一次的腺病毒-Cre,我们证实Fgfr2缺失细胞被相邻的Fgfr2杂合细胞竞争淘汰。总之,我们的数据表明Fgfr2在增殖和侵袭的TEB中起作用,但在青春期乳腺的成熟导管中不是必需的。