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mRNA 结构通过改变功能半衰期来调节蛋白质表达。

mRNA structure regulates protein expression through changes in functional half-life.

机构信息

Platform Research, Moderna, Inc., Cambridge, MA 02139.

Platform Research, Moderna, Inc., Cambridge, MA 02139

出版信息

Proc Natl Acad Sci U S A. 2019 Nov 26;116(48):24075-24083. doi: 10.1073/pnas.1908052116. Epub 2019 Nov 11.

Abstract

Messenger RNAs (mRNAs) encode information in both their primary sequence and their higher order structure. The independent contributions of factors like codon usage and secondary structure to regulating protein expression are difficult to establish as they are often highly correlated in endogenous sequences. Here, we used 2 approaches, global inclusion of modified nucleotides and rational sequence design of exogenously delivered constructs, to understand the role of mRNA secondary structure independent from codon usage. Unexpectedly, highly expressed mRNAs contained a highly structured coding sequence (CDS). Modified nucleotides that stabilize mRNA secondary structure enabled high expression across a wide variety of primary sequences. Using a set of eGFP mRNAs with independently altered codon usage and CDS structure, we find that the structure of the CDS regulates protein expression through changes in functional mRNA half-life (i.e., mRNA being actively translated). This work highlights an underappreciated role of mRNA secondary structure in the regulation of mRNA stability.

摘要

信使 RNA(mRNA)在其一级序列和高级结构中都编码信息。由于内源性序列中经常高度相关,因此像密码子使用和二级结构等因素对调节蛋白质表达的独立贡献很难确定。在这里,我们使用了两种方法,即修饰核苷酸的全局包含和外源性传递构建体的合理序列设计,来理解独立于密码子使用的 mRNA 二级结构的作用。出乎意料的是,高表达的 mRNAs 包含高度结构化的编码序列(CDS)。稳定 mRNA 二级结构的修饰核苷酸能够在广泛的一级序列中实现高表达。使用一组具有独立改变的密码子使用和 CDS 结构的 eGFP mRNAs,我们发现 CDS 的结构通过改变功能性 mRNA 半衰期(即正在被主动翻译的 mRNA)来调节蛋白质表达。这项工作强调了 mRNA 二级结构在调节 mRNA 稳定性方面的未被充分认识的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cad1/6883848/b60cf26d66b5/pnas.1908052116fig01.jpg

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