Ca2+-dependent and Ca2+-independent regulation of the thyroid epithelial junction complex by protein kinases

被引:26
|
作者
Nilsson, M
Fagman, H
Ericson, LE
机构
[1] Inst. of Anatomy and Cell Biology, Göteborg University, Göteborg
[2] Inst. of Anatomy and Cell Biology, Göteborg University, S-413 90 Göteborg
关键词
D O I
10.1006/excr.1996.0151
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The integrity of epithelial cell junctions is controlled by E-cadherin-mediated (Ca2+-dependent) cell-cell adhesion. In thyroid follicular cells the dissociation of junctions induced by transfer to low Ca2+ medium (Ca2+ switch) is prevented by thyrotropin acting via cyclic AMP/protein kinase A (cAMP/PKA) (Nilsson et al., Ear. J. Cell Biol. 56, 308-318, 1991). In MDCK kidney epithelial cells protein kinase inhibitors elicit a similar response which, however, is cadherin-independent (Citi, J. Cell Biol. 117, 169-178, 1992; Citi et al., J. Cell Sci. 107, 683-692, 1994). As such inhibitors also may interfere with PKA, we examined in a single cell type, filter-cultured pig thyrocytes, the effects and possible interactions of the cAMP/PKA agonist forskolin (or thyrotropin) and the kinase inhibitor H-7 in Ca2+ switch experiments. We found that the epithelial barrier dysfunction, comprising loss of transepithelial resistance, increased transepithelial flux of [H-3]inulin and redistribution of junction proteins (cadherin and ZO-1), which follows Ca2+ removal were inhibited by TSH, forskolin, and H-7. All agents were also able to induce recovery of resistance in low Ca2+. The maximal recovery effects of forskolin and H-7 were additive when given simultaneous with Ca2+ chelator. In contrast, forskolin-induced recovery initiated 10 min after Ca2+ removal was antagonized by H-7. The protection of junctions by forskolin in low Ca2+ was rapidly abolished by light trypsinization (0.001%), whereas the same concentration of trypsin had little or no effect on the corresponding action of H-7 or staurosporine, another potent kinase inhibitor. In H-7-treated cells kept in low Ca2+, trypsin caused redistribution of ZO-1 from the plasma membrane to the cytoplasm while the transepithelial resistance remained high. Taken together, the data indicate that TSH via cAMP/PKA and the protein kinase inhibitor H-7 reinforce the thyroid epithelial barrier under low Ca2+ conditions by distinct although interacting mechanisms. The high sensitivity to proteolysis in the absence of Ca2+ suggests that the cAMP-regulated mechanism is cadherin-dependent. H-7 promotes or inhibits the cAMP/PKA and the protein kinase inhibitor H-7 reinforce the thyroid epithelial barrier under Ca2+ conditions by distinct although interacting mechanisms. The high sensitivity to proteolysis in the absence of Ca2+ suggests that the cAMP-regulated mechanism is cadherin-dependent. H-7 promotes or inhibits the cAMP/PKA-mediated recovery of transepithelial resistance depending on the duration of the preceding low Ca2+ period. The trypsin-induced displacement of ZO-1 in H-7-treated cells in low Ca2+ suggests that the localization of ZO-1 to the tight junction is not necessary for the maintenance of junctional tightness. (C) 1996 Academic Press, Inc.
引用
收藏
页码:1 / 11
页数:11
相关论文
共 50 条
  • [1] Ca2+-dependent and Ca2+-independent regulation of smooth muscle contraction
    Ganitkevich, V
    Hasse, V
    Pfitzer, G
    JOURNAL OF MUSCLE RESEARCH AND CELL MOTILITY, 2002, 23 (01) : 47 - 52
  • [2] Ca2+-dependent and Ca2+-independent regulation of smooth muscle contraction
    Vladimir Ganitkevich
    Veronika Hasse
    Gabriele Pfitzer
    Journal of Muscle Research & Cell Motility, 2002, 23 : 47 - 52
  • [3] Ca2+-dependent and Ca2+-independent regulation of contractility in isolated human myocardium
    Pieske, B
    Schlotthauer, K
    Schattmann, J
    Beyersdorf, F
    Martin, J
    Just, H
    Hasenfuss, G
    BASIC RESEARCH IN CARDIOLOGY, 1997, 92 (Suppl 1) : 75 - 86
  • [4] Ca2+-dependent and Ca2+-independent regulation of contractility in isolated human myocardium
    B. Pieske
    K. Schlotthauer
    J. Schattmann
    F. Beyersdorf
    J. Martin
    H. Just
    G. Hasenfuss
    Basic Research in Cardiology, 1997, 92 : 75 - 86
  • [5] Ca2+-Dependent and Ca2+-Independent ATP Release in Astrocytes
    Xiong, Yingfei
    Sun, Suhua
    Teng, Sasa
    Jin, Mu
    Zhou, Zhuan
    FRONTIERS IN MOLECULAR NEUROSCIENCE, 2018, 11
  • [6] Hypoxic vasorelaxation:: Ca2+-dependent and Ca2+-independent mechanisms
    Thorne, GD
    Ishida, Y
    Paul, RJ
    CELL CALCIUM, 2004, 36 (3-4) : 201 - 208
  • [7] CA2+-DEPENDENT AND CA2+-INDEPENDENT COMPONENTS OF TRANSMITTER RELEASE AT THE FROG NEUROMUSCULAR-JUNCTION
    TANABE, N
    KIJIMA, H
    JOURNAL OF PHYSIOLOGY-LONDON, 1992, 455 : 271 - 289
  • [8] CA2+-DEPENDENT AND CA2+-INDEPENDENT ACTIVITIES OF NEURAL AND NONNEURAL SYNAPTOTAGMINS
    LI, C
    ULLRICH, B
    ZHANG, JZ
    ANDERSON, RGW
    BROSE, N
    SUDHOF, TC
    NATURE, 1995, 375 (6532) : 594 - 599
  • [9] Relative contribution of Ca2+-dependent and Ca2+-independent mechanisms to the regulation of insulin secretion by glucose
    Sato, Y
    Nenquin, M
    Henquin, JC
    FEBS LETTERS, 1998, 421 (02): : 115 - 119
  • [10] REGULATION OF ARACHIDONIC-ACID RELEASE IN VASCULAR ENDOTHELIUM - CA2+-DEPENDENT AND CA2+-INDEPENDENT PATHWAYS
    BUCKLEY, BJ
    BARCHOWSKY, A
    DOLOR, RJ
    WHORTON, AR
    BIOCHEMICAL JOURNAL, 1991, 280 : 281 - 287