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Cell-Free Expression of Unnatural Amino Acid Incorporated Aquaporin SS9 with Improved Separation Performance in Biomimetic Membranes

机译:仿生膜中非天然氨基酸结合水通道蛋白SS9的无细胞表达与改进的分离性能。

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摘要

Aquaporins (AQPs) are widely applied in biomimetic membranes for water recycling and desalination. In this study, a novel aquaporin was isolated from Photobacterium profundum SS9 (AQP SS9), which showed high water permeability and potential for practical water purification applications. To improve the stability of the AQP SS9 embedded biomimetic membranes, a modified AQP SS9 was obtained by incorporation of an unnatural amino acid (p-propargyloxyphenylalanine, pPpa) (P-AQP SS9) in vitro using a mutated Methanocaldococcus jannaschii tyrosyl-tRNA synthetase (TyrRS) and the cell-free expression system. The modified AQP SS9 can covalently link with phospholipids and hence significantly improve the stability of biomimetic membranes. The concentration of Mg2+ and fusion expression with signal peptides were evaluated to enhance the expression level of P-AQP SS9, resulting in a highest yield of 49 mg/L. The modified AQP SS9 was then reconstituted into DOPC liposomes and analyzed by a stopped-flow spectrophotometer. The obtained water permeability coefficient (Pf) of 7.46×10−4 m/s was 5.7 times higher than that of proteoliposomes with the wild-type AQP SS9 (Pf=1.31×10−4 m/s) and 12.1 times higher than that of the DOPC liposomes (Pf=6.15×10−5m/s). This study demonstrates the development of a cell-free system for the expression of membrane proteins with much higher stability and the potential application of the modified aquaporins for water filtration.
机译:水通道蛋白(AQPs)广泛应用于仿生膜中,用于水的再循环和脱盐。在这项研究中,从深部光细菌SS9(AQP SS9)中分离出一种新型水通道蛋白,它显示出高的水渗透性,并且在实际水净化应用中具有潜力。为了提高AQP SS9嵌入式仿生膜的稳定性,通过使用突变的甲烷球菌詹纳氏酵母酪氨酰-tRNA合成酶( TyrRS)和无细胞表达系统。修饰的AQP SS9可以与磷脂共价连接,从而显着提高仿生膜的稳定性。评估了Mg 2 + 的浓度和与信号肽的融合表达,以提高P-AQP SS9的表达水平,最高产量为49 mg / L。然后将修饰的AQP SS9重构为DOPC脂质体,并通过停流分光光度计进行分析。所获得的水渗透系数(Pf)为7.46×10 -4 m / s,是野生型AQP SS9的脂质体的5.7倍(Pf = 1.31×10 −4 m / s),比DOPC脂质体的Pf = 6.15×10 −5 m / s高出12.1倍。这项研究证明了无细胞膜蛋白表达系统的发展,该系统具有更高的稳定性,以及修饰的水通道蛋白在水过滤中的潜在应用。

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