Department of Bioinformatic Engineering, Graduate School of Information Science and Technology, Osaka University, 1-5 Yamadaoka, Suita, Osaka 565-0871, Japan.
Langmuir. 2012 Jun 5;28(22):8426-32. doi: 10.1021/la3001703. Epub 2012 May 22.
Lipid vesicles have been used as model cell systems, in which an in-vitro transcription-translation system (IVTT) is encapsulated to carry out intravesicular protein synthesis. Despite a large number of previous studies, a quantitative understanding of how protein synthesis inside the vesicles is affected by the lipid membrane remains elusive. This is mainly because of the heterogeneity in structural properties of the lipid vesicles used in the experiments. We investigated the effects of the phospholipid membrane on green fluorescent protein (GFP) synthesis occurring inside cell-sized giant unilamellar vesicles (GUV), which have a defined quantity of lipids relative to the reaction volume. We first developed a method to distinguish GUV from multilamellar vesicles using flow cytometry (FCM). Using this method, we investigated the time course of GFP synthesis using one of the IVTT, the PURE system, and found that phospholipid in the form of GUV has little effect on GFP synthesis based on three lines of investigation. (1) GFP synthesis inside the GUV was not dependent on the size of GUV (2) or on the fraction of cholesterol or anionic phospholipid constituting the GUV, and (3) GFP synthesis proceeded similarly in GUV and in the test tube. The present results suggest that GUV provides an ideal reaction environment that does not affect the internal biochemical reaction. On the other hand, we also found that internal GFP synthesis is strongly dependent on the chemical composition of the outer solution.
脂质体已被用作模型细胞系统,其中包含一种体外转录-翻译系统(IVTT),用于进行囊泡内蛋白合成。尽管之前有大量研究,但对于囊泡内蛋白合成如何受到脂质膜的影响,仍缺乏定量的理解。这主要是由于实验中使用的脂质体在结构性质上存在异质性。我们研究了磷脂膜对发生在细胞大小的单层囊泡(GUV)内的绿色荧光蛋白(GFP)合成的影响,这些囊泡相对于反应体积具有一定数量的脂质。我们首先开发了一种使用流式细胞术(FCM)区分 GUV 和多层囊泡的方法。使用该方法,我们使用其中一种 IVTT,即 PURE 系统,研究了 GFP 合成的时间过程,并发现以 GUV 形式存在的磷脂对 GFP 合成几乎没有影响,这基于三条研究线索。(1)GUV 内的 GFP 合成不依赖于 GUV 的大小(2)或构成 GUV 的胆固醇或阴离子磷脂的比例,(3)GUV 内和试管内的 GFP 合成相似。目前的结果表明,GUV 提供了一个理想的反应环境,不会影响内部生化反应。另一方面,我们还发现内部 GFP 合成强烈依赖于外液的化学成分。