From the National Renewable Energy Laboratory, Golden, Colorado 80401 and.
J Biol Chem. 2013 Dec 6;288(49):35192-209. doi: 10.1074/jbc.M113.483727. Epub 2013 Oct 7.
Ferredoxins (FDXs) can distribute electrons originating from photosynthetic water oxidation, fermentation, and other reductant-generating pathways to specific redox enzymes in different organisms. The six FDXs identified in Chlamydomonas reinhardtii are not fully characterized in terms of their biological function. In this report, we present data from the following: (a) yeast two-hybrid screens, identifying interaction partners for each Chlamydomonas FDX; (b) pairwise yeast two-hybrid assays measuring FDX interactions with proteins from selected biochemical pathways; (c) affinity pulldown assays that, in some cases, confirm and even expand the interaction network for FDX1 and FDX2; and (d) in vitro NADP(+) reduction and H2 photo-production assays mediated by each FDX that verify their role in these two pathways. Our results demonstrate new potential roles for FDX1 in redox metabolism and carbohydrate and fatty acid biosynthesis, for FDX2 in anaerobic metabolism, and possibly in state transition. Our data also suggest that FDX3 is involved in nitrogen assimilation, FDX4 in glycolysis and response to reactive oxygen species, and FDX5 in hydrogenase maturation. Finally, we provide experimental evidence that FDX1 serves as the primary electron donor to two important biological pathways, NADPH and H2 photo-production, whereas FDX2 is capable of driving these reactions at less than half the rate observed for FDX1.
铁氧还蛋白(FDXs)可以将源自光合作用水氧化、发酵和其他还原剂生成途径的电子分配给不同生物体中的特定氧化还原酶。在衣藻中鉴定出的六种 FDX 在其生物学功能方面尚未得到充分表征。在本报告中,我们提供了以下数据:(a)酵母双杂交筛选,鉴定每种衣藻 FDX 的相互作用伙伴;(b)成对酵母双杂交测定,测量 FDX 与选定生化途径的蛋白质的相互作用;(c)亲和下拉测定,在某些情况下,甚至可以证实和扩展 FDX1 和 FDX2 的相互作用网络;以及(d)由每个 FDX 介导的体外 NADP(+)还原和 H2 光生产测定,验证它们在这两种途径中的作用。我们的结果表明 FDX1 在氧化还原代谢以及碳水化合物和脂肪酸生物合成中具有新的潜在作用,FDX2 在厌氧代谢中具有新的潜在作用,并且可能在状态转换中具有新的潜在作用。我们的数据还表明,FDX3 参与氮同化,FDX4 参与糖酵解和对活性氧的反应,FDX5 参与氢化酶成熟。最后,我们提供了实验证据表明 FDX1 是两个重要的生物学途径(NADPH 和 H2 光生产)的主要电子供体,而 FDX2 能够以低于 FDX1 观察到的速率驱动这些反应。