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首页> 外文期刊>Journal of cellular biochemistry. >Secreting oviduct epithelial cells of Coturnix coturnix japonica Coturnix coturnix japonica (QOEC) and changes to their proteome after nonviral transfection
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Secreting oviduct epithelial cells of Coturnix coturnix japonica Coturnix coturnix japonica (QOEC) and changes to their proteome after nonviral transfection

机译:CoTurnix CoTurnix的分泌物上皮细胞japonica coturnix coturnix japonica(qoec)和非血管转染后蛋白质组的变化

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摘要

Abstract The quail oviduct ( Coturnix c. japonica ) is a natural candidate avian bioreactor, while the secretive quail oviduct epithelial cells (QOECs) are potential in vitro producers of recombinant proteins and vaccines. In view of the need for highly performing and transformable cell lines, QOEC may potentially act as an alternative bioreactor platform to the existing ones, for example, to the Chinese hamster ovary. The aim of this work was to characterize QOECs and their response to nucleofection with a nonviral plasmid DNA carrying the human interferon‐α 2a gene ( hIFNλ2a ), in vitro. Primary QOEC cultures from laying quails (10‐15 weeks old) were characterized by their proliferation rate, doubling time, and multilineage differentiation. Electroporation to cell nuclei (nucleofection) was used to deliver nonviral plasmid DNA containing a reporter GFP and hIFN under the ovalbumin promoter. The posttransfection analysis included polymerase chain reaction, Western blot analysis, and liquid chromatography coupled to tandem mass spectrometry. QOEC showed a typical epithelial characteristic in a primary 2D monolayer culture system and retained secretive potential up to the first passage. QOEC showed differentiation into osteoblastic lineage after stimulation. The nucleofection mean efficiency was low (2.3%). Differences of up to 10% in the proteomic profiles between nontransfected and transfected QOEC were found, the most important of these were related to the absence of keratins and cell‐adhesion proteins in the transfected QOEC. Concluding, with the practical information provided here, QOEC have the potential to serve as an avian secreting cellular platform. QOEC may be further transformed to cell lineage to meet the requirement for a stable, electrocompetent, and transfectable model. The first proteomic comparison of QOEC delivered in this study showed, in the majority, a stable proteome of the nontransfected vs transfected QOEC.
机译:摘要鹌鹑输卵管(CoTurnix C.japonica)是一种天然候选禽生物反应器,而秘密鹌鹑输卵管上皮细胞(qoecs)是重组蛋白和疫苗的潜在体外生产商。鉴于对高度表现和可变形的细胞系的需要,QOEC可能潜在地用作现有的生物反应器平台,例如,到现有的生物反应器平台,例如,到中国仓鼠卵巢。这项工作的目的是在体外表征Qoecs及其对核原子的核原子的反应,其体外具有人干扰素-α2a基因(HIFNλ2a)的非血压质粒DNA。主要Qoec培养物铺设鹌鹑(10-15周)的特点是它们的增殖率,倍增时间和多重分化。用于细胞核的电穿孔(核心)用于在卵磷酶启动子下递送含有报告GFP和HIFN的非血液质粒DNA。产后分析包括聚合酶链反应,Western印迹分析和液相色谱偶联至串联质谱。 Qoec在初级2D单层培养系统中显示出典型的上皮特征,并保持局部潜力直到第一段。 Qoec在刺激后显示出骨细胞谱系的分化。核心均值效率低(2.3%)。发现在非扫描和转染的QOEC之间的蛋白质组学谱中高达10%的差异,这些中最重要的是与转染的QOEC中没有角蛋白和细胞粘附蛋白质有关。结论,随着这里提供的实用信息,Qoec有可能作为禽流分泌细胞平台。 Qoec可以进一步转化为细胞谱系,以满足稳定,电容和转浮模型的要求。本研究中QOEC的第一个蛋白质组学比较显示,大多数情况下,稳定的非扫描效应的蛋白质组转染QOEC。

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