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通过 P450-一氧化碳复合物测定筛选毕赤酵母全细胞中的细胞色素 P450 表达。

Screening for cytochrome P450 expression in Pichia pastoris whole cells by P450-carbon monoxide complex determination.

机构信息

Institute of Molecular Biotechnology, Graz University of Technology, Graz, Austria.

出版信息

Biotechnol J. 2013 Jan;8(1):146-52. doi: 10.1002/biot.201200185. Epub 2012 Nov 29.

Abstract

Cytochrome P450 (CYP) enzymes are useful biocatalysts for the pharmaceutical and biotechnological industries. A high-throughput method for quantification of CYP expression in yeast is needed in order to fully exploit the yeast expression system. Carbon monoxide (CO) difference spectra of whole cells have been successfully used for the quantification of heterologous CYP expressed in Escherichia coli in the 96-well format; however, very few researchers have shown whole-cell CO difference spectra with yeast cells using 1-cm path length. Spectral interference from the native hemoproteins often obscures the P450 peak, challenging functional CYP quantification in whole yeast cells. For the first time, we describe the high-throughput determination of CO difference spectra using whole cells in the 96-well format for the quantification of CYP genes expressed in Pichia pastoris. Very little interference from the hemoproteins of P. pastoris enabled CYP quantification even at relatively low expression levels. P. pastoris strains carrying a single copy or three copies of both hCPR and CYP2D6 integrated into the chromosomal DNA were used to establish the method in 96-well format, allowing to detect quantities of CYP2D6 as low as 6 nmol gCDW(-1 ) and 12 pmol per well. Finally, the established method was successfully demonstrated and used to screen P. pastoris clones expressing Candida CYP52A13.

摘要

细胞色素 P450(CYP)酶是制药和生物技术行业的有用生物催化剂。为了充分利用酵母表达系统,需要一种高通量的方法来定量酵母中的 CYP 表达。一氧化碳(CO)差光谱已成功用于定量在大肠杆菌中异源表达的 CYP,可在 96 孔格式中进行;然而,很少有研究人员使用 1 厘米光路长度显示酵母细胞的全细胞 CO 差光谱。来自天然血红素蛋白的光谱干扰常常掩盖了 P450 峰,这使得在整个酵母细胞中对功能性 CYP 进行定量具有挑战性。我们首次描述了使用全细胞在 96 孔格式中高通量测定 CO 差光谱的方法,用于定量毕赤酵母中表达的 CYP 基因。毕赤酵母的血红素蛋白干扰很小,即使在相对较低的表达水平下,也能进行 CYP 定量。使用携带单个或三个拷贝的 hCPR 和 CYP2D6 整合到染色体 DNA 中的毕赤酵母菌株,在 96 孔格式中建立了该方法,能够检测到 CYP2D6 的低至 6 nmol gCDW(-1)和 12 pmol/孔的量。最后,成功地证明并使用该方法筛选了表达 Candida CYP52A13 的毕赤酵母克隆。

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