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Examination of PHB Depolymerases in Ralstonia eutropha : Further Elucidation of the Roles of Enzymes in PHB Homeostasis

机译:富营养小球藻中PHB解聚酶的检测:进一步阐明酶在PHB体内平衡中的作用

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Polyhydroxyalkanoates (PHA) are biodegradable polymers that are attractive materials for use in tissue engineering and medical device manufacturing. Ralstonia eutropha is regarded as the model organism for PHA biosynthesis. We examined the effects of PHA depolymerase (PhaZ) expression on PHA homeostasis in R. eutropha strains. In order to analyze the impact of PhaZs on R. eutropha granule architecture, we performed electron microscopy on several phaZ knockout strains and the wild type strain grown under PHA production conditions. Analysis of the acquired micrographs was based on stereology: the ratio of granule area and cell area was determined, along with total granule count per full-size cell image. Cells bearing a phaZ2 knockout mutation alone or in conjunction with a phaZ1 mutation were found to have a high granule volume per cell volume and a higher granule count compared to wild type. A phaZ quadruple knockout strain appeared to have a low granule volume per cell volume and a low granule count per cell. Cells bearing a phaZ3 knockout were found to have a higher granule count than the wild type, whereas granule volume per cell volume was similar. Accordingly, we hypothesize that PhaZs have not only an impact on PHA degradation but also on the 3-dimensional granule architecture. Based on our data, PhaZ2 is postulated to affect granule density. This work increased our knowledge about PHA depolymerases in R. eutropha, including enzymes that had previously been uncharacterized.
机译:聚羟基链烷酸酯(PHA)是可生物降解的聚合物,是用于组织工程和医疗器械制造的有吸引力的材料。 Ralstonia eutropha被认为是PHA生物合成的模型生物。我们检查了富营养的R. eutropha菌株中PHA解聚酶(PhaZ)表达对PHA稳态的影响。为了分析PhaZs对富氧罗汉果颗粒结构的影响,我们对几种phaZ敲除菌株和在PHA生产条件下生长的野生型菌株进行了电子显微镜检查。对获取的显微照片的分析基于立体感:确定颗粒面积与细胞面积的比率,以及每个全尺寸细胞图像的总颗粒计数。与野生型相比,单独或与phaZ1突变一起携带phaZ2敲除突变的细胞被发现具有较高的每细胞体积颗粒体积和较高的颗粒计数。 phaZ四倍体敲除菌株似乎具有低的每细胞体积颗粒体积和低的每细胞颗粒计数。发现携带phaZ3基因敲除的细胞比野生型具有更高的颗粒计数,而每细胞体积的颗粒体积却相似。因此,我们假设PhaZs不仅对PHA降解有影响,而且对3维颗粒结构也有影响。根据我们的数据,PhaZ2被认为会影响颗粒密度。这项工作增加了我们对富营养红球菌中PHA解聚酶的知识,包括以前尚未鉴定的酶。

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