4.7 Article

Increases in mitochondrial reactive oxygen species trigger hypoxia-induced calcium responses in pulmonary artery smooth muscle cells

期刊

CIRCULATION RESEARCH
卷 99, 期 9, 页码 970-978

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1161/01.RES.0000247068.75808.3f

关键词

hypoxic pulmonary vasoconstriction; reactive oxygen species; redox signaling; antioxidants; fluorescence resonance energy transfer

资金

  1. NHLBI NIH HHS [HL66315, HL079650, HL35440] Funding Source: Medline
  2. NIDDK NIH HHS [DK63493] Funding Source: Medline
  3. NINDS NIH HHS [R01 NS038547-04, R01 NS038547-05, R01 NS038547, R01 NS038547-03] Funding Source: Medline

向作者/读者索取更多资源

Mitochondria have been implicated as a potential site of O-2 sensing underlying hypoxic pulmonary vasoconstriction (HPV), but 2 disparate models have been proposed to explain their reaction to hypoxia. One model proposes that hypoxia-induced increases in mitochondrial reactive oxygen species (ROS) generation activate HPV through an oxidant-signaling pathway, whereas the other proposes that HPV is a result of decreased oxidant signaling. In an attempt to resolve this debate, we use a novel, ratiometric, redox-sensitive fluorescence resonance energy transfer (HSP-FRET) probe, in concert with measurements of reduced/oxidized glutathione (GSH/GSSG), to assess cytosolic redox responses in cultured pulmonary artery smooth muscle cells (PASMCs). Superfusion of PASMCs with hypoxic media increases the HSP-FRET ratio and decreases GSH/GSSG, indicating an increase in oxidant stress. The antioxidants pyrrolidinedithiocarbamate and N-acetyl- L-cysteine attenuated this response, as well as the hypoxia-induced increases in cytosolic calcium ([Ca2+](i)), assessed by the Ca2+-sensitive FRET sensor YC2.3. Adenoviral overexpression of glutathione peroxidase or cytosolic or mitochondrial catalase attenuated the hypoxia-induced increase in ROS signaling and [Ca2+](i). Adenoviral overexpression of cytosolic Cu, Zn-superoxide dismutase (SOD-I) had no effect on the hypoxia-induced increase in ROS signaling and [Ca2+](i), whereas mitochondrial matrix-targeted Mn-SOD (SOD-II) augmented [Ca2+](i). The mitochondrial inhibitor myxothiazol attenuated the hypoxia-induced changes in the ROS signaling and [Ca2+](i), whereas cyanide augmented the increase in [Ca2+](i). Finally, simultaneous measurement of ROS and Ca2+ signaling in the same cell revealed that the initial increase in these 2 signals could not be distinguished temporally. These results demonstrate that hypoxia triggers increases in PASMC[Ca2+](i) by augmenting ROS signaling from the mitochondria.

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