A role for zinc in regulating hypoxia-induced contractile events in pulmonary endothelium

被引:24
作者
Bernal, Paula J. [2 ]
Bauer, Eileen M.
Cao, Rong
Maniar, Salony
Mosher, Mackenzie
Chen, Jun [3 ]
Wang, Qiming Jane [3 ]
Glorioso, Joseph C. [4 ]
Pitt, Bruce R.
Watkins, Simon C. [2 ]
St Croix, Claudette M. [1 ]
机构
[1] Univ Pittsburgh, Dept Environm & Occupat Hlth, Grad Sch Publ Hlth, BRIDG, Pittsburgh, PA 15219 USA
[2] Univ Pittsburgh, Dept Cell Biol & Physiol, Pittsburgh, PA 15219 USA
[3] Univ Pittsburgh, Dept Pharmacol & Chem Biol, Pittsburgh, PA 15219 USA
[4] Univ Pittsburgh, Dept Microbiol & Mol Genet, Pittsburgh, PA 15219 USA
关键词
pulmonary circulation; endothelial cells; actin stress fibers; PROTEIN-KINASE-C; SMOOTH-MUSCLE CONTRACTION; NITRIC-OXIDE; RHO-KINASE; OXIDATIVE STRESS; CYTOSKELETON; CELLS; VASOCONSTRICTION; CONTRIBUTES; PHOSPHATASE;
D O I
10.1152/ajplung.00328.2010
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Bernal PJ, Bauer EM, Cao R, Maniar S, Mosher M, Chen J, Wang QJ, Glorioso JC, Pitt BR, Watkins SC, St. Croix CM. A role for zinc in regulating hypoxia-induced contractile events in pulmonary endothelium. Am J Physiol Lung Cell Mol Physiol 300: L874-L886, 2011. First published March 4, 2011; doi:10.1152/ajplung.00328.2010.-We previously reported that zinc thiolate signaling contributes to hypoxic contraction of small, nonmuscularized arteries of the lung. The present studies were designed to investigate mechanisms by which hypoxia-released zinc induces contraction in isolated pulmonary endothelial cells and to delineate the signaling pathways involved in zinc-mediated changes in the actin cytoskeleton. We used fluorescence-based imaging to show that hypoxia induced time-dependent increases in actin stress fibers that were reversed by the zinc chelator, N,N,N',N'-tetrakis-(2-pyridylmethyl)-ethylenediamine (TPEN). We further showed that hypoxia-induced phosphorylation of the contractile protein myosin light chain (MLC) and assembly of actin stress fibers were each TPEN sensitive. Hypoxia and zinc-induced inhibition of MLC phosphatase (MLCP) were independent of the regulatory subunit (MYPT1) of MLCP, and therefore hypoxia-released zinc likely inhibits MLCP at its catalytic (PP1) subunit. Inhibition of PKC by Ro-31-8220 and a dominant-negative construct of PKC-epsilon attenuated hypoxia-induced contraction of isolated pulmonary endothelial cells. Furthermore, zinc-induced phosphorylation of MLC (secondary to inhibition of MLCP) was PKC dependent, and hypoxia-released zinc promoted the phosphorylation of the PKC substrate, CPI-17. Collectively, these data suggest a link between hypoxia, elevations in labile zinc, and activation of PKC, which in turn acts through CPI-17 to inhibit MLCP activity and promote MLC phosphorylation, ultimately inducing stress fiber formation and endothelial cell contraction.
引用
收藏
页码:L874 / L886
页数:13
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