Literature DB >> 12225963

Evidence for the role of p38 MAP kinase in hypoxia-induced pulmonary vasoconstriction.

M R Karamsetty1, J R Klinger, N S Hill.   

Abstract

Mitogen-activated protein (MAP) kinases regulate smooth muscle cell contraction. Hypoxia contracts pulmonary arteries by mechanisms that are incompletely understood. We hypothesized that hypoxic contraction of pulmonary arteries involves activation of the MAP kinases. To test this hypothesis, we studied the effects of SB-202190, a p38 MAP kinase inhibitor, PD-98059 and UO-126, two structurally different MEKK inhibitors, and anisomycin, a stimulator of p38 MAP kinase on acute hypoxia-induced contraction in rat conduit pulmonary artery rings precontracted with phenylephrine or KCl. Hypoxia induced a transient contraction, followed by a relaxation, and then a slowly developing sustained contraction. Hypoxia also significantly increased phosphorylation of p38 MAP kinase. SB-202190 did not affect the transient phase but abrogated the sustained phase of hypoxic contraction, whereas anisomycin enhanced both phases of contraction. SB-202190 also attenuated and anisomycin enhanced the phenylephrine-induced contraction. In contrast, PD-98059 and UO-126 had minimal effects on either hypoxic or phenylephrine-induced contraction. None of the treatments modified KCl-induced contraction. We conclude that p38, but not the ERK1/ERK2 MAP kinase pathway, mediates the sustained phase of hypoxic contraction in isolated rat pulmonary arteries.

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Year:  2002        PMID: 12225963     DOI: 10.1152/ajplung.00475.2001

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  4 in total

Review 1.  Reactive Oxygen Species and Pulmonary Vasculature During Hypobaric Hypoxia.

Authors:  Patricia Siques; Julio Brito; Eduardo Pena
Journal:  Front Physiol       Date:  2018-07-09       Impact factor: 4.566

2.  Involvement of Ca2+-activated K+ channel 3.1 in hypoxia-induced pulmonary arterial hypertension and therapeutic effects of TRAM-34 in rats.

Authors:  Shujin Guo; Yongchun Shen; Guangming He; Tao Wang; Dan Xu; Fuqiang Wen
Journal:  Biosci Rep       Date:  2017-07-27       Impact factor: 3.840

3.  Hypoxia Exacerbates Inflammatory Acute Lung Injury via the Toll-Like Receptor 4 Signaling Pathway.

Authors:  Gang Wu; Gang Xu; De-Wei Chen; Wen-Xiang Gao; Jian-Qiong Xiong; Hai-Ying Shen; Yu-Qi Gao
Journal:  Front Immunol       Date:  2018-07-23       Impact factor: 7.561

4.  Revisiting the mechanism of hypoxic pulmonary vasoconstriction using isolated perfused/ventilated mouse lung.

Authors:  Pritesh P Jain; Susumu Hosokawa; Mingmei Xiong; Aleksandra Babicheva; Tengteng Zhao; Marisela Rodriguez; Shamin Rahimi; Kiana Pourhashemi; Francesca Balistrieri; Ning Lai; Atul Malhotra; John Y-J Shyy; Daniela Valdez-Jasso; Patricia A Thistlethwaite; Ayako Makino; Jason X-J Yuan
Journal:  Pulm Circ       Date:  2020-11-25       Impact factor: 2.886

  4 in total

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