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油体和油质蛋白在重组蛋白生产和其他生物技术应用中的应用。

Use of oil bodies and oleosins in recombinant protein production and other biotechnological applications.

机构信息

Department of Botany, University of Delhi, North Campus, Delhi-110007, India.

出版信息

Biotechnol Adv. 2010 May-Jun;28(3):293-300. doi: 10.1016/j.biotechadv.2010.01.001. Epub 2010 Jan 11.

Abstract

Oil bodies obtained from oilseeds have been exploited for a variety of applications in biotechnology in the recent past. These applications are based on their non-coalescing nature, ease of extraction and presence of unique membrane proteins-oleosins. In suspension, oil bodies exist as separate entities and, hence, they can serve as emulsifying agent for a wide variety of products, ranging from vaccines, food, cosmetics and personal care products. Oil bodies have found significant uses in the production and purification of recombinant proteins with specific applications. The desired protein can be targeted to oil bodies in oilseeds by affinity tag or by fusing it directly to the N or C terminal of oleosins. Upon targeting, the hydrophobic domain of oleosin embeds into the TAG matrix of oil body, whereas the protein fused with N and/or C termini is exposed on the oil body surface, where it acquires correct confirmation spontaneously. Oil bodies with the attached foreign protein can be separated easily from other cellular components. They can be used directly or the protein can be cleaved from the fusion. The desired protein can be a pharmaceutically important polypeptide (e.g. hirudin, insulin and epidermal growth factor), a neutraceutical polypeptide (somatotropin), a commercially important enzyme (e.g. xylanase), a protein important for improvement of crops (e.g. chitinase) or a multimeric protein. These applications can further be widened as oil bodies can also be made artificially and oleosin gene can be expressed in bacterial systems. Thus, a protein fused to oleosin can be expressed in Escherichia coli and after cell lysis it can be incorporated into artificial oil bodies, thereby facilitating the extraction and purification of the desired protein. Artificial oil bodies can also be used for encapsulation of probiotics. The manipulation of oleosin gene for the expression of polyoleosins has further expanded the arena of the applications of oil bodies in biotechnology.

摘要

油体从油脂种子中提取,在最近的生物技术应用中得到了广泛的应用。这些应用基于它们的非聚结性质、易于提取和存在独特的膜蛋白-油质体。在悬浮液中,油体作为独立的实体存在,因此它们可以作为各种产品的乳化剂,从疫苗、食品、化妆品和个人护理产品。油体在生产和纯化具有特定应用的重组蛋白方面有了显著的应用。通过亲和标签或直接融合到油质体 N 或 C 末端,所需的蛋白质可以靶向油体。融合后,油质体的疏水区嵌入油体的 TAG 基质中,而与 N 和/或 C 末端融合的蛋白质暴露在油体表面,在那里它自发地获得正确的构象。带有附着的外源蛋白的油体可以很容易地与其他细胞成分分离。它们可以直接使用,也可以从融合物中切割蛋白质。所需的蛋白质可以是一种具有重要药用价值的多肽(如水蛭素、胰岛素和表皮生长因子)、一种具有营养作用的多肽(生长激素)、一种具有商业价值的酶(如木聚糖酶)、一种对作物改良重要的蛋白质(如几丁质酶)或一种多聚体蛋白质。这些应用可以进一步扩大,因为油体也可以人工合成,并且可以在细菌系统中表达油质体基因。因此,与油质体融合的蛋白质可以在大肠杆菌中表达,在细胞裂解后,可以将其掺入人工油体中,从而便于所需蛋白质的提取和纯化。人工油体也可用于益生菌的封装。油质体基因的操纵用于表达多油质体进一步扩大了油体在生物技术中的应用领域。

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