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Structural and Regulatory Genes Required to Make the Gas Dimethyl Sulfide in Bacteria

机译:在细菌中产生气体二甲基硫所需的结构和调控基因

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Dimethyl sulfide (DAAS) is a key compound in global sulfur and carbon cycles. DMS oxidation products cause cloud nucleation and may affect weather and climate. DMS is generated largely by bacterial catabolism of dimethylsulfoniopropionate (DMSP), a secondary metabolite made by marine algae. We demonstrate that the bacterial gene dddD is required for this process and that its transcription is induced by the DMSP substrate. Cloned dddD from the marine bacterium Marinomonas and from two bacterial strains that associate with higher plants, the N_2-fixing symbiont Rhizobium NGR234 and the root-colonizing Burkholderia cepacia AMMD, conferred to Escherichia coli the ability to make DMS from DMSP. The inferred enzymatic mechanism for DMS liberation involves an initial step in which DMSP is modified by addition of acyl coenzyme A, rather than the immediate release of DMS by a DMSP lyase, the previously suggested mechanism.
机译:二甲基硫醚(DAAS)是全球硫和碳循环中的关键化合物。 DMS氧化产物会导致云成核,并可能影响天气和气候。 DMS主要由细菌分解代谢海藻产生的次生代谢产物二甲基磺基丙酸酯(DMSP)产生。我们证明该过程需要细菌基因dddD,并且其转录是由DMSP底物诱导的。从海洋细菌Marinomonas以及与高等植物相关的两个细菌菌株Ndd固定共生根瘤菌NGR234和根定殖伯克霍尔德菌洋葱伯克霍尔德菌AMMD克隆的dddD,赋予了大肠杆菌从DMSP制备DMS的能力。推断的DMS释放的酶促机制涉及一个初始步骤,其中通过添加酰基辅酶A来修饰DMSP,而不是通过先前提出的机制通过DMSP裂解酶立即释放DMS。

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