首页> 外文期刊>Plant Biotechnology Journal >Elevation of oil body integrity and emulsion stability by polyoleosins, multiple oleosin units joined in tandem head-to-tail fusions.
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Elevation of oil body integrity and emulsion stability by polyoleosins, multiple oleosin units joined in tandem head-to-tail fusions.

机译:用聚烯烃的油脂完整性和乳液稳定性的升高,多种油蛋白单元加入串联末端融合。

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摘要

We have successfully created polyoleosins by joining multiple oleosin units in tandem head-to-tail fusions. Constructs encoding recombinant proteins of 1, 3 and 6 oleosin repeats were purposely expressed both in planta and in Escherichia coli. Recombinant polyoleosins accumulated in the seed oil bodies of transgenic plants and in the inclusion bodies of E. coli. Although polyoleosin was estimated to only accumulate to <2% of the total oil body protein in planta, their presence increased the freezing tolerance of imbibed seeds as well as emulsion stability and structural integrity of purified oil bodies; these increases were greater with increasing oleosin repeat number. Interestingly, the hexameric form of polyoleosin also led to an observable delay in germination which could be overcome with the addition of external sucrose. Prokaryotically produced polyoleosin was purified and used to generate artificial oil bodies and the increase in structural integrity of artificial oil bodies-containing polyoleosin was found to mimic those produced in planta. We describe here the construction of polyoleosins, their purification from E. coli, and properties imparted on seeds as well as native and artificial oil bodies. A putative mechanism to account for these properties is also proposed.
机译:我们通过在串联头尾部融合中加入多个油蛋白单位来成功创建了聚棒素。编码1,3和6个oleosin重组的重组蛋白的构建体在Planta和大肠杆菌中出于故意表达。在转基因植物的种子油体中积聚的重组聚玻璃素和大肠杆菌的包涵体。虽然估计聚孔蛋白仅在植物中累积为<2%的油体蛋白质,但它们的存在增加了纯化的种子的冷冻耐受性以及纯化油体的乳液稳定性和结构完整性;随着oleosin重复数量的增加,这些增加更大。有趣的是,六聚体形式的聚烯烃也导致了可观察到的发芽延迟,这可以通过添加外蔗糖来克服。纯化原核制成的聚素并用于产生人造油体,发现含有人造油体的结构完整性的增加是模拟植物中产生的那些。我们在这里描述了聚烯烃的构建,它们从大肠杆菌的纯化,以及在种子和原生和人造油体上施加的性质。还提出了考虑这些属性的推定机制。

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