Pepper M S, Soriano J V, Menoud P A, Sappino A P, Orci L, Montesano R
Department of Morphology, University of Geneva Medical Center, Switzerland.
Exp Cell Res. 1995 Jul;219(1):204-10. doi: 10.1006/excr.1995.1220.
Epithelial tubulogenesis is responsible for the exquisitely intricate organization of functional units of parenchymal organs. We have previously demonstrated that hepatocyte growth factor (HGF--also known as scatter factor) is a stroma-derived epithelial morphogen, which induces tubulogenesis by kidney-derived epithelial cells in vitro. The mammary gland provides a particularly attractive model for the study of epithelial morphogenesis, since its development in postnatal life involves elongation and branching of epithelial tubules. The aim of the present studies was to assess the expression and modulation of HGF and its receptor c-Met in the rat mammary gland during pregnancy, lactation, and involution. By ribonuclease protection assay, we demonstrate that levels of both HGF and c-met transcripts are progressively reduced during pregnancy, are virtually undetectable during lactation, and increase during the phase of involution to prepregnancy levels. The reduction in HGF and c-met expression corresponds to periods in which functions other than tubulogenesis predominate in the mammary gland, namely alveologenesis (mid to late pregnancy) and milk protein synthesis (lactation). Using a murine mammary gland-derived epithelial cell line, we demonstrate that levels of c-met mRNA are significantly reduced by exogenously added prolactin, providing a possible explanation for the reduction in c-met in the rat mammary gland during lactation. The potential significance of down-regulation of HGF/c-met during lactation is discussed.
上皮小管形成负责实质器官功能单位的极其复杂的组织构建。我们之前已经证明,肝细胞生长因子(HGF,也称为分散因子)是一种源自基质的上皮形态发生素,它在体外可诱导肾源性上皮细胞发生小管形成。乳腺为上皮形态发生的研究提供了一个特别有吸引力的模型,因为其在出生后的发育涉及上皮小管的延长和分支。本研究的目的是评估妊娠、哺乳和退化期间大鼠乳腺中HGF及其受体c-Met的表达和调节情况。通过核糖核酸酶保护试验,我们证明HGF和c-met转录本的水平在妊娠期间逐渐降低,在哺乳期间几乎检测不到,而在退化阶段增加到妊娠前水平。HGF和c-met表达的降低与乳腺中除小管形成之外的其他功能占主导的时期相对应,即腺泡形成期(妊娠中期至晚期)和乳蛋白合成期(哺乳)。使用源自小鼠乳腺的上皮细胞系,我们证明外源性添加的催乳素可显著降低c-met mRNA的水平,这为哺乳期间大鼠乳腺中c-met的降低提供了一种可能的解释。我们还讨论了哺乳期间HGF/c-met下调的潜在意义。