4.5 Article

Mammary collective cell migration involves transient loss of epithelial features and individual cell migration within the epithelium

期刊

JOURNAL OF CELL SCIENCE
卷 125, 期 11, 页码 2638-2654

出版社

COMPANY BIOLOGISTS LTD
DOI: 10.1242/jcs.096875

关键词

Epithelial morphogenesis; Apico-basal polarity; Mammary gland; Breast cancer

资金

  1. National Cancer Institute [P50 CA88843]
  2. National Heart, Lung, and Blood Institute [R01 HL107361]
  3. Safeway Foundation Award for Breast Cancer Research
  4. Office of Science, of the U.S. Department of Energy [DE-AC03-76SF00098]
  5. University of California - Berkeley Physical Sciences in Oncology Center
  6. National Cancer Institute
  7. National Institute of Environmental Health Sciences [R01 CA057621, U01 ES019458]
  8. California Breast Cancer Research Program [17UB-8705]

向作者/读者索取更多资源

Normal mammary morphogenesis involves transitions between simple and multilayered epithelial organizations. We used electron microscopy and molecular markers to determine whether intercellular junctions and apico-basal polarity were maintained in the multilayered epithelium. We found that multilayered elongating ducts had polarized apical and basal tissue surfaces both in three-dimensional culture and in vivo. However, individual cells were only polarized on surfaces in contact with the lumen or extracellular matrix. The basolateral marker scribble and the apical marker atypical protein kinase C zeta localized to all interior cell membranes, whereas PAR3 displayed a cytoplasmic localization, suggesting that the apico-basal polarity was incomplete. Despite membrane localization of E-cadherin and beta-catenin, we did not observe a defined zonula adherens connecting interior cells. Instead, interior cells were connected through desmosomes and exhibited complex interdigitating membrane protrusions. Single-cell labeling revealed that individual cells were both protrusive and migratory within the epithelial multilayer. Inhibition of Rho kinase (ROCK) further reduced intercellular adhesion on apical and lateral surfaces but did not disrupt basal tissue organization. Following morphogenesis, segregated membrane domains were re-established and junctional complexes re-formed. We observed similar epithelial organization during mammary morphogenesis in organotypic culture and in vivo. We conclude that mammary epithelial morphogenesis involves a reversible, spatially limited, reduction in polarity and intercellular junctions and active individualistic cell migration. Our data suggest that reductions in polarity and adhesion during breast cancer progression might reflect partial recapitulation of a normal developmental program.

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