Hadsell Darryl L, Bonnette Sharon, George Jessy, Torres Daniel, Klimentidis Yann, Gao Shan, Haney Peter M, Summy-Long Joan, Soloff Melvyn S, Parlow Albert F, Sirito Mario, Sawadogo Michele
United States Department of Agriculture/Agricultural Research Service Children's Nutrition Research Center, Baylor College of Medicine, Houston, Texas 77030, USA.
Mol Endocrinol. 2003 Nov;17(11):2251-67. doi: 10.1210/me.2002-0031. Epub 2003 Aug 7.
Previous studies have suggested that upstream stimulatory factors (USFs) regulate genes involved with cell cycle progression. Because of the relationship of USFs to an important oncogene in breast cancer, c-myc, we chose to determine the importance of USF to normal mammary gland development in the mouse. Expression of USF in the mammary gland throughout development demonstrated only modest changes. Mutation of the Usf2 gene was associated with reduced fertility in females, but had no effect on prepartum mammary gland development. However, lactation performance in Usf2-/- females was only half of that observed in Usf2+/+ females, and both lactose and nitrogen were decreased in milk from Usf2-/- dams. This decrease was associated with diminished mammary tissue wet weight and luminal area by d 9 of lactation and with a decreased protein-DNA ratio. This decrease was associated with reduced abundance of the eukaryotic initiation factors eIF4E and eIF4G. Blood oxytocin concentrations on d 9 postpartum were also lower in Usf2-/- mice than Usf2+/+ mice. In contrast, the mutation had no effect on blood prolactin concentrations, mammary cell proliferation or apoptosis, mammary tissue oxytocin receptors, or milk protein gene expression. The mutation had only modest effects on maternal behavior. These data support the idea that USF is important to physiological processes necessary for the establishment and maintenance of normal lactation and suggest that USF-2 may impact lactation through both systemic and mammary cell-specific mechanisms.
先前的研究表明,上游刺激因子(USFs)可调节与细胞周期进程相关的基因。由于USFs与乳腺癌中的一个重要癌基因c-myc存在关联,我们选择确定USF对小鼠正常乳腺发育的重要性。在整个发育过程中,USF在乳腺中的表达仅表现出适度变化。Usf2基因的突变与雌性生育力降低有关,但对产前乳腺发育没有影响。然而,Usf2 - / - 雌性小鼠的泌乳性能仅为Usf2 + / + 雌性小鼠的一半,并且Usf2 - / - 母鼠乳汁中的乳糖和氮含量均降低。这种降低与泌乳第9天时乳腺组织湿重和管腔面积减小以及蛋白质 - DNA比率降低有关。这种降低与真核起始因子eIF4E和eIF4G的丰度降低有关。产后第9天,Usf2 - / - 小鼠的血液催产素浓度也低于Usf2 + / + 小鼠。相比之下,该突变对血液催乳素浓度、乳腺细胞增殖或凋亡、乳腺组织催产素受体或乳蛋白基因表达没有影响。该突变对母性行为仅有适度影响。这些数据支持了USF对正常泌乳的建立和维持所必需的生理过程很重要这一观点,并表明USF-2可能通过全身和乳腺细胞特异性机制影响泌乳。