Vargo-Gogola Tracy, Heckman Brandy M, Gunther Edward J, Chodosh Lewis A, Rosen Jeffrey M
Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.
Mol Endocrinol. 2006 Jun;20(6):1391-405. doi: 10.1210/me.2005-0426. Epub 2006 Feb 9.
p190-B Rho GTPase activating protein is essential for mammary gland development because p190-B deficiency prevents ductal morphogenesis. To investigate the role of p190-B during distinct stages of mammary gland development, tetracycline-regulatable p190-B-overexpressing mice were generated. Short-term induction of p190-B in the developing mammary gland results in abnormal terminal end buds (TEBs) that exhibit aberrant budding off the neck, histological anomalies, and a markedly thickened stroma. Overexpression of p190-B throughout postnatal development results in increased branching, delayed ductal elongation, and disorganization of the ductal tree. Interestingly, overexpression of p190-B during pregnancy results in hyperplastic lesions. Several cellular and molecular alterations detected within the aberrant TEBs may contribute to these phenotypes. Signaling through the IGF pathway is altered, and the myoepithelial cell layer is discontinuous at sites of aberrant budding. An increase in collagen and extensive infiltration of macrophages, which have recently been implicated in branching morphogenesis, is observed in the stroma surrounding the p190-B-overexpressing TEBs. We propose that the stromal response, disruption of the myoepithelial layer, and alterations in IGF signaling in the p190-B-overexpressing mice impact the TEB architecture, leading to disorganization and increased branching of the ductal tree. Moreover, we suggest that alterations in tissue architecture and the adjacent stroma as a consequence of p190-B overexpression during pregnancy leads to loss of growth control and the formation of hyperplasia. These data demonstrate that precise control of p190-B Rho GTPase-activating protein activity is critical for normal branching morphogenesis during mammary gland development.
p190-B Rho GTP酶激活蛋白对乳腺发育至关重要,因为p190-B缺陷会阻止导管形态发生。为了研究p190-B在乳腺发育不同阶段的作用,构建了四环素可调控的p190-B过表达小鼠。在发育中的乳腺中短期诱导p190-B会导致异常的终末芽(TEB),这些终末芽表现出从颈部异常出芽、组织学异常以及明显增厚的基质。在整个出生后发育过程中过表达p190-B会导致分支增加、导管伸长延迟以及导管树紊乱。有趣的是,在怀孕期间过表达p190-B会导致增生性病变。在异常的TEB中检测到的几种细胞和分子改变可能导致了这些表型。通过IGF途径的信号传导发生改变,并且肌上皮细胞层在异常出芽部位不连续。在p190-B过表达的TEB周围的基质中观察到胶原蛋白增加以及巨噬细胞广泛浸润,巨噬细胞最近被认为与分支形态发生有关。我们提出,p190-B过表达小鼠中的基质反应、肌上皮层破坏以及IGF信号传导改变影响了TEB结构,导致导管树紊乱和分支增加。此外,我们认为怀孕期间p190-B过表达导致的组织结构和相邻基质的改变会导致生长控制丧失和增生形成。这些数据表明,精确控制p190-B Rho GTP酶激活蛋白活性对于乳腺发育过程中的正常分支形态发生至关重要。