Department of Chemistry, University of Manitoba, Winnipeg, Manitoba, Canada.
Department of Chemistry, University of Manitoba, Winnipeg, Manitoba, Canada.
J Biol Chem. 2021 Jan-Jun;296:100036. doi: 10.1074/jbc.RA120.015775. Epub 2020 Nov 24.
BC200 is a noncoding RNA elevated in a broad spectrum of tumor cells that is critical for cell viability, invasion, and migration. Overexpression studies have implicated BC200 and the rodent analog BC1 as negative regulators of translation in both cell-based and in vitro translation assays. Although these studies are consistent, they have not been confirmed in knockdown studies and direct evidence for this function is lacking. Herein, we have demonstrated that BC200 knockdown is correlated with a decrease in global translation rates. As this conflicts with the hypothesis that BC200 is a translational suppressor, we overexpressed BC200 by transfection of in vitro transcribed RNA and transient expression from transfected plasmids. In this context BC200 suppressed translation; however, an innate immune response confounded the data. To overcome this, breast cancer cells stably overexpressing BC200 and various control RNAs were developed by selection for genomic incorporation of a plasmid coexpressing BC200 and the neomycin resistance gene. Stable overexpression of BC200 was associated with elevated translation levels in pooled stable cell lines and isolated single-cell clones. Cross-linking sucrose density gradient centrifugation demonstrated an association of BC200 and its reported binding partners SRP9/14, CSDE1, DHX36, and PABPC1 with both ribosomal subunits and polysomal RNA, an association not previously observed owing to the labile nature of the interactions. In summary, these data present a novel understanding of BC200 function as well as optimized methodology that has far reaching implications in the study of noncoding RNAs, particularly within the context of translational regulatory mechanisms.
BC200 是一种在广泛的肿瘤细胞中上调的非编码 RNA,对细胞活力、侵袭和迁移至关重要。过表达研究表明,BC200 和啮齿动物类似物 BC1 作为细胞内和体外翻译测定中翻译的负调节剂。尽管这些研究是一致的,但它们在敲低研究中没有得到证实,并且缺乏对此功能的直接证据。在此,我们已经证明 BC200 的敲低与整体翻译速率的降低相关。由于这与 BC200 是翻译抑制剂的假设相矛盾,我们通过转染体外转录的 RNA 和转染质粒的瞬时表达来过表达 BC200。在这种情况下,BC200 抑制了翻译;然而,固有免疫反应使数据复杂化。为了克服这一点,通过选择基因组整合共表达 BC200 和新霉素抗性基因的质粒,开发了稳定过表达 BC200 的乳腺癌细胞和各种对照 RNA。稳定过表达 BC200 与汇集稳定细胞系和分离的单细胞克隆中的翻译水平升高相关。交联蔗糖密度梯度离心表明,BC200 及其报告的结合伴侣 SRP9/14、CSDE1、DHX36 和 PABPC1 与核糖体亚基和多核糖体 RNA 相关联,由于相互作用的不稳定性,以前没有观察到这种关联。总之,这些数据提供了对 BC200 功能的新理解,以及优化的方法学,这对非编码 RNA 的研究具有深远的意义,特别是在翻译调节机制的背景下。