4.7 Article

Rab10-Mediated Secretion Synergizes with Tissue Movement to Build a Polarized Basement Membrane Architecture for Organ Morphogenesis

期刊

DEVELOPMENTAL CELL
卷 38, 期 1, 页码 47-60

出版社

CELL PRESS
DOI: 10.1016/j.devcel.2016.06.009

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资金

  1. NIH [T32 HD055164, R01-GM094276]
  2. NSF
  3. American Cancer Society [RSG-14-176]
  4. National Center for Advancing Translational Sciences of the NIH [UL1 TR000430]
  5. NCI CCSG [P30 CA060553]

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Basement membranes (BMs) are planar protein networks that support epithelial function. Regulated changes to BM architecture can also contribute to tissue morphogenesis, but how epithelia dynamically remodel their BMs is unknown. In Drosophila, elongation of the initially spherical egg chamber correlates with the generation of a polarized network of fibrils in its surrounding BM. Here, we use live imaging and genetic manipulations to determine how these fibrils form. BM fibrils are assembled from newly synthesized proteins in the pericellular spaces between the egg chamber's epithelial cells and undergo oriented insertion into the BM by directed epithelial migration. We find that a Rab10-based secretion pathway promotes pericellular BM protein accumulation and fibril formation. Finally, by manipulating this pathway, we show that BM fibrillar structure influences egg chamber morphogenesis. This work highlights how regulated protein secretion can synergize with tissue movement to build a polarized BM architecture that controls tissue shape.

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