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Redox-shuttling between chloroplast and cytosol: integration of intra-chloroplast and extra-chloroplast metabolism

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CURRENT OPINION IN PLANT BIOLOGY
卷 15, 期 3, 页码 252-260

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CURRENT BIOLOGY LTD
DOI: 10.1016/j.pbi.2012.01.014

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  1. [21380014]
  2. [23658016]
  3. Grants-in-Aid for Scientific Research [21380014, 23658016] Funding Source: KAKEN

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Reducing equivalents produced in the chloroplast are essential for many key cellular metabolic enzyme reactions. Two redox shuttle systems transfer reductant out of the chloroplast; these systems consist of metabolite transporters, coupled with stromal and cytosolic dehydrogenase isozymes. The transporters function in the redox shuttle and also operate as key enzymes in carbon/nitrogen metabolism. To maintain adequate levels of reductant and proper metabolic balance, the shuttle systems are finely controlled. Also, in the leaves of C-4 plants, cell-specific division of carbon and nitrogen assimilation includes cell-specific localization of the redox shuttle systems. The redox shuttle systems are tightly linked to cellular metabolic pathways and are essential for maintaining metabolic balance between energy and reducing equivalents.

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