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研究好氧化异养条件下红假单胞菌 S1 中聚羟基丁酸(PHB)的生理作用。

Understanding the physiological roles of polyhydroxybutyrate (PHB) in Rhodospirillum rubrum S1 under aerobic chemoheterotrophic conditions.

机构信息

UCD Earth Institute, O'Brien Centre for Science, University College Dublin, Belfield, Dublin 4, Ireland.

School of Biomolecular and Biomedical Science, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Appl Microbiol Biotechnol. 2016 Oct;100(20):8901-12. doi: 10.1007/s00253-016-7711-5. Epub 2016 Aug 1.

Abstract

Polyhydroxybutyrate (PHB) is an important biopolymer accumulated by bacteria and associated with cell survival and stress response. Here, we make two surprising findings in the PHB-accumulating species Rhodospirillum rubrum S1. We first show that the presence of PHB promotes the increased assimilation of acetate preferentially into biomass rather than PHB. When R. rubrum is supplied with (13)C-acetate as a PHB precursor, 83.5 % of the carbon in PHB comes from acetate. However, only 15 % of the acetate ends up in PHB with the remainder assimilated as bacterial biomass. The PHB-negative mutant of R. rubrum assimilates 2-fold less acetate into biomass compared to the wild-type strain. Acetate assimilation proceeds via the ethylmalonyl-CoA pathway with (R)-3-hydroxybutyrate as a common intermediate with the PHB pathway. Secondly, we show that R. rubrum cells accumulating PHB have reduced ribulose 1,5-bisphosphate carboxylase (RuBisCO) activity. RuBisCO activity reduces 5-fold over a 36-h period after the onset of PHB. In contrast, a PHB-negative mutant maintains the same level of RuBisCO activity over the growth period. Since RuBisCO controls the redox potential in R. rubrum, PHB likely replaces RuBisCO in this role. R. rubrum is the first bacterium found to express RuBisCO under aerobic chemoheterotrophic conditions.

摘要

聚羟基丁酸酯(PHB)是一种由细菌积累的重要生物聚合物,与细胞存活和应激反应有关。在这里,我们在聚羟基丁酸酯积累物种红假单胞菌 S1 中发现了两个令人惊讶的发现。我们首先表明,PHB 的存在促进了乙酸盐优先被同化到生物量中,而不是 PHB 中。当红假单胞菌用(13)C-乙酸盐作为 PHB 前体供应时,PHB 中 83.5%的碳来自乙酸盐。然而,只有 15%的乙酸盐最终进入 PHB,其余的则被同化为细菌生物量。与野生型菌株相比,红假单胞菌的 PHB 阴性突变体将 2 倍少的乙酸盐同化到生物量中。乙酸盐同化通过乙基丙二酸辅酶 A 途径进行,(R)-3-羟基丁酸作为与 PHB 途径的共同中间体。其次,我们表明,积累 PHB 的红假单胞菌细胞的核酮糖 1,5-二磷酸羧化酶(RuBisCO)活性降低。在 PHB 开始后 36 小时内,RuBisCO 活性降低了 5 倍。相比之下,PHB 阴性突变体在整个生长期间保持相同的 RuBisCO 活性。由于 RuBisCO 控制红假单胞菌中的氧化还原电位,PHB 可能取代 RuBisCO 发挥此作用。红假单胞菌是第一个在好氧化能异养条件下表达 RuBisCO 的细菌。

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