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Thioredoxin Is Involved in Oxygen-Regulated Formation of the Photosynthetic Apparatus of Rhodobacter sphaeroides

机译:硫氧还蛋白参与球形红球菌光合作用的氧调节形成。

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摘要

Thioredoxin, a redox active protein, has been previously demonstrated to be essential for growth of the anoxygenic photosynthetic bacterium Rhodobacter sphaeroides. In the present study, the involvement of thioredoxin in the formation of the photosynthetic apparatus of R. sphaeroides WS8 was investigated by construction and analysis of a mutant strain disrupted for the chromosomal trxA copy and carrying a plasmid-borne copy of trxA under the control of the hybrid ptrc promoter inducible by IPTG (isopropyl-β-d-thiogalactopyranoside). This strain was viable in the absence of IPTG but was affected in pigmentation. When shifted from high to low oxygen tension conditions, the trxA mutant showed a reduced bacteriochlorophyll content in comparison to that of the wild type. Although thioredoxin is able to regulate aminolevulinic acid (ALA) synthase (the first enzyme of the tetrapyrrole biosynthetic pathway) activity by a dithiol-disulfide exchange, our mutant strain exhibited a level of ALA synthase activity identical to that of the wild type, suggesting that thioredoxin is involved in other steps to regulate the synthesis of the photosynthetic apparatus. Accordingly, we showed that the trxA mutation affects the oxygen-regulated expression of the puf operon encoding the pigment-binding proteins of the light-harvesting and reaction center complexes. Upon transition from aerobic to semiaerobic growth conditions, the maximal puf mRNA level was found to be 40 to 50% lower in the mutant strain than in the wild type. The stability of the puf transcripts was identical in both strains grown under low oxygen tension, indicating that the role of thioredoxin in regulating puf expression occurs at the transcriptional level.
机译:硫氧还蛋白是一种氧化还原活性蛋白,先前已被证明对厌氧性光合细菌球形红球菌的生长至关重要。在本研究中,通过构建和分析突变体菌株,研究了硫氧还蛋白在球形红球藻WS8光合装置形成中的作用,该突变体被染色体trxA拷贝破坏,并在trxA的控制下携带质粒携带的trxA拷贝。 IPTG(异丙基-β-d-硫代吡喃半乳糖吡喃糖苷)诱导的杂种ptrc启动子。该菌株在不存在IPTG的情况下是可行的,但色素沉着受到影响。当从高氧张力条件转变为低氧张力条件时,与野生型相比,trxA突变体的细菌叶绿素含量降低。尽管硫氧还蛋白能够通过二硫醇-二硫键交换调节氨基乙酰丙酸(ALA)合酶(四吡咯生物合成途径的第一个酶)活性,但我们的突变菌株显示出与野生型相同的ALA合酶活性水平,这表明硫氧还蛋白参与其他步骤,以调节光合装置的合成。因此,我们表明trxA突变影响编码取光和反应中心复合物的色素结合蛋白的puf操纵子的氧调节表达。从需氧生长条件转变为半需氧生长条件后,突变菌株中的最大puf mRNA水平比野生型低40%至50%。在低氧张力下生长的两个菌株中,puf转录物的稳定性是相同的,这表明硫氧还蛋白在调节puf表达中的作用发生在转录水平。

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