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中国仓鼠卵巢(CHO)冷休克基因的生物信息学鉴定及其冷诱导启动子的生物学证据

Bioinformatic Identification of Chinese Hamster Ovary (CHO) Cold-Shock Genes and Biological Evidence of their Cold-Inducible Promoters.

作者信息

Nguyen Ly Ngoc, Novak Neža, Baumann Martina, Koehn Jadranka, Borth Nicole

机构信息

Austrian Centre of Industrial Biotechnology, Muthgasse 11, 1190, Vienna, Austria.

Department of Biotechnology, University of Natural Resources and Life Sciences, Muthgasse 18, 1190, Vienna, Austria.

出版信息

Biotechnol J. 2020 Mar;15(3):e1900359. doi: 10.1002/biot.201900359. Epub 2019 Dec 11.

Abstract

Lower cultivation temperature dramatically affects cell growth and cellular productivity in Chinese hamster ovary cells (CHO) and is often used in industrial applications with the aim to enhance productivity. Cold-inducible proteins whose activity is induced at lower temperature play an important role in understanding the mechanisms of cold-induced changes in gene expression. One of these mechanisms is increased transcription of specific target genes controlled by sequence elements in cold-inducible promoters. This study provides a list of cold-inducible genes and endogenous cold-inducible promoters of CHO cells. Transcriptome data before and after a temperature shift from 37 to 33 °C are analyzed to identify 94 cold-inducible genes, which are highly expressed and have a high fold change in expression after the temperature shift. Cold-inducible promoters are identified from the top ten cold-inducible genes, showing up to 11-fold increased luciferase expression at lowered temperature in transient transfections. Additionally, several common transcription factor binding sites are identified in the top cold-inducible promoter sequences and expression of their corresponding transcription factors over temperature-shift cultivation is evaluated. These may be responsible for enhanced promoter activity under lower temperature and can be used as engineering targets.

摘要

较低的培养温度会显著影响中国仓鼠卵巢细胞(CHO)的细胞生长和细胞生产力,并且在工业应用中经常被用来提高生产力。其活性在较低温度下被诱导的冷诱导蛋白在理解冷诱导基因表达变化的机制中起着重要作用。其中一种机制是由冷诱导启动子中的序列元件控制的特定靶基因转录增加。本研究提供了CHO细胞的冷诱导基因和内源性冷诱导启动子列表。分析了从37℃温度转移到33℃前后的转录组数据,以鉴定94个冷诱导基因,这些基因在温度转移后高度表达且表达倍数变化高。从排名前十的冷诱导基因中鉴定出冷诱导启动子,在瞬时转染中,其在较低温度下的荧光素酶表达增加高达11倍。此外,在排名靠前的冷诱导启动子序列中鉴定出几个常见的转录因子结合位点,并评估了它们相应的转录因子在温度转移培养过程中的表达。这些可能是低温下启动子活性增强的原因,可作为工程靶点。

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