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Algorithm for optimized mRNA design improves stability and immunogenicity

Medicine and Health

Algorithm for optimized mRNA design improves stability and immunogenicity

H. Zhang, L. Zhang, et al.

Discover how a pioneering algorithm called LinearDesign is reshaping mRNA vaccine technology developed by an expert team of researchers, including He Zhang and Liang Zhang. This innovative approach enhances mRNA stability and efficiency, dramatically boosting immune response. Learn how these advancements could revolutionize mRNA-based therapies and vaccines.... show more
Abstract
Messenger RNA (mRNA) vaccines are being used to combat the spread of COVID-19 (refs. 1–3), but they still exhibit critical limitations caused by mRNA instability and degradation, which are major obstacles for the storage, distribution and efficacy of the vaccine products1. Increasing secondary structure lengthens mRNA half-life, which, together with optimal codons, improves protein expression1. Therefore, a principled mRNA design algorithm must optimize both structural stability and codon usage. However, owing to synonymous codons, the mRNA design space is prohibitively large—for example, there are around 2.4 × 10632 candidate mRNA sequences for the SARS-CoV-2 spike protein. This poses insurmountable computational challenges. Here we provide a simple and unexpected solution using the classical concept of lattice parsing in computational linguistics, where finding the optimal mRNA sequence is analogous to identifying the most likely sentence among similar-sounding alternatives9. Our algorithm LinearDesign finds an optimal mRNA design for the spike protein in just 11 minutes, and can concurrently optimize stability and codon usage. LinearDesign substantially improves mRNA half-life and protein expression, and profoundly increases antibody titre by up to 128 times in mice compared to the codon-optimization benchmark on mRNA vaccines for COVID-19 and varicella-zoster virus. This result reveals the great potential of principled mRNA design and enables the exploration of previously unreachable but highly stable and efficient designs. Our work is a timely tool for vaccines and other mRNA-based medicines encoding therapeutic proteins such as monoclonal antibodies and anti-cancer drugs7,8.
Publisher
Nature
Published On
Sep 14, 2023
Authors
He Zhang, Liang Zhang, Ang Lin, Congcong Xu, Ziyu Li, Kaibo Liu, Boxiang Liu, Xiaopin Ma, Fanfan Zhao, Huiling Jiang, Chunxiu Chen, Haifa Shen, Hangwen Li, David H. Mathews, Yujian Zhang, Liang Huang
Tags
mRNA vaccines
LinearDesign
stability
optimization
COVID-19
protein expression
antibody titre
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