Key result
In pulmonary arterial smooth muscle cells from chronically hypoxic rats, ET-1 induces calcium influx through voltage-dependent calcium channels mediated primarily by protein kinase C, tyrosine kinases, and Rho kinase.
In pulmonary arterial smooth muscle cells from chronically hypoxic rats, ET-1 induces calcium influx through voltage-gated calcium channels via a voltage-independent pathway mediated by PKC, Rho kinase, and tyrosine kinases.
Hypothesis-generating for ET-1 pathway inhibition in pulmonary hypertension; human studies required before clinical translation.
Exposure to chronic hypoxia (CH) causes pulmonary hypertension. The vasoconstrictor endothelin-1 (ET-1) is thought to play a role in the development of hypoxic pulmonary hypertension. In pulmonary arterial smooth muscle cells (PASMCs) from chronically hypoxic rats, ET-1 signaling is altered, with the ET-1-induced change in intracellular calcium concentration (Δ[Ca(2+)](i)) occurring through activation of voltage-dependent Ca(2+) channels (VDCC) even though ET-1-induced depolarization via inhibition of K(+) channels is lost. The mechanism underlying this response is unclear. We hypothesized that activation of VDCCs by ET-1 following CH might be mediated by protein kinase C (PKC) and/or Rho kinase, both of which have been shown to phosphorylate and activate VDCCs. To test this hypothesis, we examined the effects of PKC and Rho kinase inhibitors on the ET-1-induced Δ[Ca(2+)](i) in PASMCs from rats exposed to CH (10% O(2), 3 wk) using the Ca(2+)-sensitive dye fura 2-AM and fluorescent microscopy techniques. We found that staurosporine and GF109203X, inhibitors of PKC, and Y-27632 and HA 1077, Rho kinase inhibitors, reduced the ET-1-induced Δ[Ca(2+)](i) by >70%. Inhibition of tyrosine kinases (TKs) with genistein or tyrphostin A23, or combined inhibition of PKC, TKs, and Rho kinase, reduced the Δ[Ca(2+)](i) to a similar extent as inhibition of either PKC or Rho kinase alone. The ability of PKC or Rho kinase to activate VDCCs in our cells was verified using phorbol 12-myristate 13-acetate and GTP-γ-S. These results suggest that following CH, the ET-1-induced Δ[Ca(2+)](i) in PASMCs occurs via Ca(2+) influx through VDCCs mediated primarily by PKC, TKs, and Rho kinase.
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Luke et al. (2012) studied Hypoxic pulmonary hypertension (animal model). Kinase inhibitors (PKC, Rho kinase, tyrosine kinase inhibitors) vs. Control (untreated cells) was evaluated on Change in intracellular calcium concentration ([Ca2+]i) in response to ET-1. In pulmonary arterial smooth muscle cells from chronically hypoxic rats, ET-1 induces calcium influx through voltage-dependent calcium channels mediated primarily by protein kinase C, tyrosine kinases, and Rho kinase.
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