Department of Psychiatry and Biobehavioral Science, UCLA School of Medicine, Los Angeles, CA 90095, USA.
Development. 2011 Feb;138(4):767-76. doi: 10.1242/dev.057588.
Reelin signaling is required for appropriate cell migration and ductal patterning during mammary gland morphogenesis. Dab1, an intracellular adaptor protein activated in response to reelin signaling, is expressed in the developing mammary bud and in luminal epithelial cells in the adult gland. Reelin protein is expressed in a complementary pattern, first in the epithelium overlying the mammary bud during embryogenesis and then in the myoepithelium and periductal stroma in the adult. Deletion in mouse of either reelin or Dab1 induced alterations in the development of the ductal network, including significant retardation in ductal elongation, decreased terminal branching, and thickening and disorganization of the luminal wall. At later stages, some mutant glands overcame these early delays, but went on to exhibit enlarged and chaotic ductal morphologies and decreased terminal branching: these phenotypes are suggestive of a role for reelin in spatial patterning or structural organization of the mammary epithelium. Isolated mammary epithelial cells exhibited decreased migration in response to exogenous reelin in vitro, a response that required Dab1. These observations highlight a role for reelin signaling in the directed migration of mammary epithelial cells driving ductal elongation into the mammary fat pad and provide the first evidence that reelin signaling may be crucial for regulating the migration and organization of non-neural tissues.
Reelin 信号在乳腺形态发生过程中对于适当的细胞迁移和导管模式形成是必需的。 Dab1 是一种细胞内衔接蛋白,可响应 Reelin 信号而被激活,在乳腺芽发育和成年腺体的腔上皮细胞中表达。 Reelin 蛋白以互补的模式表达,首先在胚胎发育期间覆盖乳腺芽的上皮细胞中表达,然后在成年的肌上皮细胞和导管周围基质中表达。在小鼠中缺失 Reelin 或 Dab1 会导致导管网络的发育发生改变,包括导管伸长明显延迟、终末分支减少以及腔壁变厚和紊乱。在后期阶段,一些突变的腺体克服了这些早期的延迟,但继续表现出增大和混乱的导管形态和终末分支减少:这些表型提示 Reelin 在乳腺上皮的空间模式形成或结构组织中发挥作用。体外分离的乳腺上皮细胞对 Reelin 的迁移反应降低,这一反应需要 Dab1。这些观察结果强调了 Reelin 信号在指导乳腺上皮细胞定向迁移以将导管伸长进入乳腺脂肪垫中的作用,并首次提供了证据表明 Reelin 信号可能对调节非神经组织的迁移和组织至关重要。