Restricted epithelial proliferation by lacritin via PKCα-dependent NFAT and mTOR pathways

Author:

Wang Jiahu1,Wang Ningning1,Xie Jinling1,Walton Staci C.1,McKown Robert L.2,Raab Ronald W.2,Ma Peisong1,Beck Shannon L.1,Coffman George L.2,Hussaini Isa M.3,Laurie Gordon W.1

Affiliation:

1. Department of Cell Biology

2. Department of Integrated Science and Technology, James Madison University, Harrisonburg, VA 22807

3. Department of Pathology, University of Virginia, Charlottesville, VA 22904

Abstract

Renewal of nongermative epithelia is poorly understood. The novel mitogen “lacritin” is apically secreted by several nongermative epithelia. We tested 17 different cell types and discovered that lacritin is preferentially mitogenic or prosecretory for those types that normally contact lacritin during its glandular outward flow. Mitogenesis is dependent on lacritin's C-terminal domain, which can form an α-helix with a hydrophobic face, as per VEGF's and PTHLP's respective dimerization or receptor-binding domain. Lacritin targets downstream NFATC1 and mTOR. The use of inhibitors or siRNA suggests that lacritin mitogenic signaling involves Gαi or Gαo–PKCα-PLC–Ca2+–calcineurin–NFATC1 and Gαi or Gαo–PKCα-PLC–phospholipase D (PLD)–mTOR in a bell-shaped, dose-dependent manner requiring the Ca2+ sensor STIM1, but not TRPC1. This pathway suggests the placement of transiently dephosphorylated and perinuclear Golgi–translocated PKCα upstream of both Ca2+ mobilization and PLD activation in a complex with PLCγ2. Outward flow of lacritin from secretory cells through ducts may generate a proliferative/secretory field as a different unit of cellular renewal in nongermative epithelia where luminal structures predominate.

Publisher

Rockefeller University Press

Subject

Cell Biology

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