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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >One-step purification of delipidated Bacteriorhodopsin by aqueous-three-phase system from purple membrane of Halobacterium. (Special Issue: Advances in bioseparations for food and bioprocessing.)
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One-step purification of delipidated Bacteriorhodopsin by aqueous-three-phase system from purple membrane of Halobacterium. (Special Issue: Advances in bioseparations for food and bioprocessing.)

机译:水相三相系统从嗜盐杆菌的紫色膜上一步纯化脱脂的细菌视紫红质。 (特刊:食品和生物加工的生物分离研究进展。)

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摘要

Bacteriorhodopsin (BR), the only protein in the purple membrane (PM) of certain extreme halophilic microorganisms, functions as a light-driven proton pump using light energy to generate transmembrane proton gradient for ATP synthesis. BR naturally aggregates in a highly ordered two-dimensional hexagonal array of trimers in the PM of Halobacterium. The BR in the isolated PM can be employed to generate a photocurrent in a photocell. However, delipidated BR (deBR) has been reported be more efficient than BR for photocurrent generation. In the present work, detergent CHAPS was included in anaqueous three-phase system (A3PS) to remove the lipids in the out layer of the BR trimer during the preparation of deBR. A3PS that consisted of polypropyleneglycol (PPG), polyethyleneglycol (PEG), and phosphate buffer purified deBR directly from the cell lysate of Halobacterium salinarum with a recovery yield of 89.7%. CHAPS along with the contaminant bacterioruberin pigment were partitioned into the top PPG-rich phase while deBR was mainly located at the interface between PEG-rich phase and the lower phosphate phase. After further purification by using ultrafiltration to remove PEG, the purified deBR when immobilized on indium tin oxide (ITO) glass was able to generate 60% higher photocurrent density.
机译:细菌视紫红质(BR)是某些极端嗜盐微生物的紫色膜(PM)中的唯一蛋白质,可作为光驱动的质子泵,利用光能生成跨膜质子梯度以进行ATP合成。 BR自然地聚集在嗜盐菌PM中高度有序的二维六边形三聚体阵列中。隔离的PM中的BR可用于在光电管中产生光电流。然而,据报道,对于光电流产生,脱脂的BR(deBR)比BR更有效。在目前的工作中,清洁剂CHAPS被包含在三相水溶液(A3PS)中,以在制备deBR期间去除BR三聚体外层的脂质。由丙二醇(PPG),聚乙二醇(PEG)和磷酸盐缓冲液组成的A3PS直接从盐杆菌(Halobacterium salinarum)的细胞裂解物中纯化出deBR,回收率为89.7%。 CHAPS以及污染的细菌视紫红质颜料被分配到了富含PPG的顶部,而deBR主要位于富含PEG的相和较低的磷酸盐的相之间。通过使用超滤去除PEG进一步纯化后,纯化的deBR固定在氧化铟锡(ITO)玻璃上时能够产生60%的更高光电流密度。

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