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Nuclear Transport: A Switch for the Oxidative Stress—Signaling Circuit?
Author(s) -
Mohamed Kodiha,
Ursula Stochaj
Publication year - 2011
Publication title -
journal of signal transduction
Language(s) - English
Resource type - Journals
eISSN - 2090-1739
pISSN - 2090-1747
DOI - 10.1155/2012/208650
Subject(s) - oxidative stress , microbiology and biotechnology , cytoplasm , nuclear transport , reactive oxygen species , signal transduction , nucleus , function (biology) , oxidative phosphorylation , cell physiology , biology , cell nucleus , cell , biochemistry
Imbalances in the formation and clearance of reactive oxygen species (ROS) can lead to oxidative stress and subsequent changes that affect all aspects of physiology. To limit and repair the damage generated by ROS, cells have developed a multitude of responses. A hallmark of these responses is the activation of signaling pathways that modulate the function of downstream targets in different cellular locations. To this end, critical steps of the stress response that occur in the nucleus and cytoplasm have to be coordinated, which makes the proper communication between both compartments mandatory. Here, we discuss the interdependence of ROS-mediated signaling and the transport of macromolecules across the nuclear envelope. We highlight examples of oxidant-dependent nuclear trafficking and describe the impact of oxidative stress on the transport apparatus. Our paper concludes by proposing a cellular circuit of ROS-induced signaling, nuclear transport and repair.

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