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There is now a CONTENT FREEZE for Mercury while we switch to a new platform. It began on Friday, March 10 at 6pm and will end on Wednesday, March 15 at noon. No new content can be created during this time, but all material in the system as of the beginning of the freeze will be migrated to the new platform, including users and groups. Functionally the new site is identical to the old one. webteam@gatech.edu
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Redox processes are at the foundation of nearly all aspects of biology. In addition to free radicals, related oxidants, and antioxidants, thiol/disulfide redox regulation is central to the basic functioning of cells and tissues. All these set the cellular redox environment and therefore are key to regulation of biochemical pathways and networks, influencing organism health. To understand better how cellular redox processes connect to the metabolome, proteome, lipidome, and genome we need absolute, quantitative information on all redox active compounds as well as thermodynamic and kinetic information on their reactions, i.e. knowledge of the complete redoxome. Quantitative information is essential to establish the dynamic mathematical models needed to reveal the temporal evolution of biochemical pathways and networks. This new field of Quantitative Redox Biology will allow researchers to identify new targets for intervention to advance our efforts to achieve optimal human health.
The goal of this working group meeting is to initiate discussion on how we can help each other and the community as a whole advance research in Quantitative Redox Biology.
Please note that this event is not sanctioned by SFRBM, although the society has kindly provided meeting space for us. We will be convening primarily during the break between the SFRBM pre-meeting workshop and the President’s Welcome. The format of this working group meeting will be informal with very short presentations followed by discussion on the following topic areas:
Complimentary registration required, visit website below.