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Poly-β-hydroxybutyrate accumulation in Bradyrhizobium japonicum depends on proteins referred to as phasins

机译:Bradyrhizobium japonicum的聚-β-羟基丁酯积累取决于称为磷酸的蛋白质

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Bradyrhizobium japonicum USDA110, a soybean symbiont, is capable of accumulating a large amount of poly-β-hydroxybutyrate (PHB) as an intracellular carbon storage polymer during free-living growth. Within the genome of USDA110, there are a number of genes annotated as paralogs of proteins involved in PHB metabolism, including its biosynthesis, degradation, and stabilization of its granules. They include two phbA paralogs, two phbB paralogs, five phbC paralogs, two phaZ paralogs, at least four phaP phasin paralogs, and one phaR encoding a putative transcriptional repressor to control phaP expression. Quantitative reverse-transcriptase PCR analyses revealed that PHB accumulation was related neither to redundancy nor expression levels of the phbA, phbB, phbC, and phaZ paralogs for PHB-synthesis and degradation. On the other hand, at least three of the phaP paralogs, involved in the growth and stabilization of PHB granules, were induced under PHB accumulating conditions. Moreover, the most prominently induced phasin exhibited the highest affinity to PHB in vitro; it was able to displace PhaR previously bound to PHB. These results suggest that PHB accumulation in free-living B. japonicum USDA110 may not be achieved by controlling production and degradation of PHB. In contrast, it is achieved by stabilizing granules autonomously produced in an environment of excess carbon sources together with restricted nitrogen sources.
机译:Bradyrhizobium japonicum USDA110,一种大豆Symbiont,能够在自由生长期间将大量的聚-β-羟基丁酸酯(PHB)积聚在细胞内碳储存聚合物中。在USDA110的基因组内,存在许多基因作为参与PHB代谢的蛋白质蛋白酶,包括其生物合成,降解和颗粒的稳定化。它们包括两种phba副蛋白,两种phbb副鸟,五个phbc副蛋白,两种phaz paralogs,至少四个phap磷蛋白常规蛋白酶,以及一个编码推定转录抑制剂的一个phar以控制phap表达。定量逆转录酶PCR分析显示,PHB积累既不是PHBA,PHBB,PHBC和PHAZ副酸的冗余,表达水平,用于PHB合成和降解。另一方面,在PHB积聚条件下诱导至少三个参与PHB颗粒的生长和稳定化的PHAP旁泊雷戈尔蛋白酶。此外,最突出的诱导的胰岛素在体外表现出对PHB的最高亲和力;它能够使先前与PHB结合的PHAL。这些结果表明,通过控制PHB的生产和降解,可能无法实现自由生物B. japonicum USDA110中的PHB积累。相反,通过稳定在过量碳源的环境中自主制作的颗粒与限制氮源一起稳定颗粒来实现。

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