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使用液滴数字PCR准确测定流式分选细胞的质粒拷贝数。

Accurate determination of plasmid copy number of flow-sorted cells using droplet digital PCR.

作者信息

Jahn Michael, Vorpahl Carsten, Türkowsky Dominique, Lindmeyer Martin, Bühler Bruno, Harms Hauke, Müller Susann

机构信息

Helmholtz-Centre for Environmental Research - UFZ, Permoserstr. 15, 04318 Leipzig, Germany.

出版信息

Anal Chem. 2014 Jun 17;86(12):5969-76. doi: 10.1021/ac501118v. Epub 2014 Jun 3.

Abstract

Many biotechnological processes rely on the expression of a plasmid-based target gene. A constant and sufficient number of plasmids per cell is desired for efficient protein production. To date, only a few methods for the determination of plasmid copy number (PCN) are available, and most of them average the PCN of total populations disregarding heterogeneous distributions. Here, we utilize the highly precise quantification of DNA molecules by droplet digital PCR (ddPCR) and combine it with cell sorting using flow cytometry. A duplex PCR assay was set up requiring only 1000 sorted cells for precise determination of PCN. The robustness of this method was proven by thorough optimization of cell sorting, cell disruption, and PCR conditions. When non plasmid-harboring cells of Pseudomonas putida KT2440 were spiked with different dilutions of the expression plasmid pA-EGFP_B, a PCN from 1 to 64 could be accurately detected. As a proof of principle, induced cultures of P. putida KT2440 producing an EGFP-fused model protein by means of the plasmid pA-EGFP_B were investigated by flow cytometry and showed two distinct subpopulations, fluorescent and nonfluorescent cells. These two subpopulations were sorted for PCN determination with ddPCR. A remarkably diverging plasmid distribution was found within the population, with nonfluorescent cells showing a much lower PCN (≤1) than fluorescent cells (PCN of up to 5) under standard conditions.

摘要

许多生物技术过程依赖于基于质粒的靶基因的表达。为了高效生产蛋白质,每个细胞需要恒定且足够数量的质粒。迄今为止,仅有少数几种测定质粒拷贝数(PCN)的方法,而且大多数方法是对总群体的PCN进行平均,而忽略了其异质分布。在此,我们利用微滴数字PCR(ddPCR)对DNA分子进行高精度定量,并将其与流式细胞术细胞分选相结合。建立了一种双重PCR检测方法,仅需1000个分选细胞就能精确测定PCN。通过对细胞分选、细胞裂解和PCR条件的全面优化,证明了该方法的稳健性。当恶臭假单胞菌KT2440的非质粒携带细胞与不同稀释度的表达质粒pA - EGFP_B混合时,可准确检测到1至64的PCN。作为原理验证,通过流式细胞术研究了利用质粒pA - EGFP_B产生EGFP融合模型蛋白的恶臭假单胞菌KT2440诱导培养物,结果显示有两个不同的亚群,即荧光细胞和非荧光细胞。对这两个亚群进行分选,用ddPCR测定PCN。结果发现群体内质粒分布存在显著差异,在标准条件下,非荧光细胞的PCN(≤1)比荧光细胞(PCN高达5)低得多。

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