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Rhodanese Functions as Sulfur Supplier for Key Enzymes in Sulfur Energy Metabolism

机译:Rhodanese作为硫能量代谢关键酶的硫供应商

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摘要

How microorganisms obtain energy is a challenging topic, and there have been numerous studies on the mechanisms involved. Here, we focus on the energy substrate traffic in the hyperthermophilic bacterium Aquifex aeolicus. This bacterium can use insoluble sulfur as an energy substrate and has an intricate sulfur energy metabolism involving several sulfur-reducing and -oxidizing supercomplexes and enzymes. We demonstrate that the cytoplasmic rhodanese SbdP participates in this sulfur energy metabolism. Rhodaneses are a widespread family of proteins known to transfer sulfur atoms. We show that SbdP has also some unusual characteristics compared with other rhodaneses; it can load a long sulfur chain, and it can interact with more than one partner. Its partners (sulfur reductase and sulfur oxygenase reductase) are key enzymes of the sulfur energy metabolism of A. aeolicus and share the capacity to use long sulfur chains as substrate. We demonstrate a positive effect of SbdP, once loaded with sulfur chains, on sulfur reductase activity, most likely by optimizing substrate uptake. Taken together, these results lead us to propose a physiological role for SbdP as a carrier and sulfur chain donor to these key enzymes, therefore enabling channeling of sulfur substrate in the cell as well as greater efficiency of the sulfur energy metabolism of A. aeolicus.
机译:微生物如何获取能量是一个具有挑战性的话题,并且已经对涉及的机制进行了大量研究。在这里,我们专注于嗜热菌Aquifex aeolicus中的能量底物流量。该细菌可以使用不溶性硫作为能量底物,并具有复杂的硫能量代谢,涉及几种还原和氧化硫的超配合物和酶。我们证明,胞质若丹红花SbdP参与这种硫能量代谢。罗丹内酯是已知可转移硫原子的广泛蛋白质家族。我们表明,与其他若丹明相比,SbdP还具有一些不同寻常的特征。它可以加载一条很长的硫链,并且可以与多个伙伴相互作用。它的伙伴(硫还原酶和硫加氧酶还原酶)是水曲霉硫能量代谢的关键酶,并具有使用长硫链作为底物的能力。我们证明,一旦负载了硫链,SbdP就会对硫还原酶活性产生积极影响,这很可能是通过优化底物吸收来实现的。综上所述,这些结果使我们提出了SbdP作为这些关键酶的载体和硫链供体的生理学作用,因此能够使硫底物在细胞中通道化,并提高了A.aeolicus的硫能量代谢效率。

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