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PMID: 26045368 已发表 · ppublish 英语

Engineering mammalian cell factories with SINEUP noncoding RNAs to improve translation of secreted proteins.

Gene ·第 569 卷 ·第 2 期 ·2015-10-19

Patrucco Laura, Chiesa Andrea, Soluri Maria Felicia, Fasolo Francesca, Takahashi Hazuki, Carninci Piero, Zucchelli Silvia, Santoro Claudio, Gustincich Stefano, Sblattero Daniele, Cotella Diego

摘要

Whenever the function of a recombinant protein depends on post-translational processing, mammalian cells become an indispensable tool for their production. This is particularly true for biologics and therapeutic monoclonal antibodies (MAbs). Despite some drawbacks, Chinese Hamster Ovary (CHO) cells are the workhorse for MAbs production in academia and industry. Several methodologies have been adopted to improve expression and stability, including methods based on selective pressure or cell engineering. We have previously identified SINEUPs as a new functional class of natural and synthetic long non-coding RNAs that through the activity of an inverted SINEB2 element are able to promote translation of partially overlapping sense coding mRNAs. Here we show that by taking advantage of their modular structure, synthetic SINEUPs can be designed to increase production of secreted proteins. Furthermore, by experimentally validating antisense to elastin (AS-eln) RNA as a natural SINEUP, we show that SINEUP-mediated control may target extracellular proteins. These results lead us to propose synthetic SINEUPs as new versatile tools to optimize production of secreted proteins in manufacturing pipelines and natural SINEUPs as new regulatory RNAs in the secretory pathways.

关键词
CHO cell Cell factory Elastin Long noncoding RNA Luciferase assay SINEUP Serum-free Signal peptide
文献信息
期刊
Gene
期刊简称
Gene
发表日期
2015-10-19
收录日期
2015-07-29
更新日期
2015-07-29
语言
英语
国家/地区
Netherlands
NLM ID
7706761
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