International journal of molecular sciences

Improving mRNA Protein Production During Cell Stress

Updated

Abstract

mRNA-based therapeutics can enhance protein production even under cellular stress conditions.

  • Rational mRNA engineering may significantly improve translation efficiency in stressful environments.
  • Cellular stress typically activates pathways that suppress overall protein synthesis.
  • Optimized mRNA constructs could partially bypass these stress-induced inhibitory mechanisms.
  • Improved mRNA stability may lead to sustained protein expression during challenging cellular conditions.
  • Design strategies focus on enhancing translation stability and efficiency for gene therapy applications.

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What this is

  • This review focuses on the mechanisms regulating mRNA translation during cellular stress and proposes design strategies for enhancing translation efficiency.
  • mRNA-based therapeutics are gaining traction for treating various diseases, including cancer and genetic disorders.
  • The review emphasizes the importance of optimizing mRNA constructs to improve protein expression under stress conditions that typically inhibit translation.

Essence

  • Optimizing mRNA design can enhance therapeutic protein expression during cellular stress. Incorporating stress-adaptive mechanisms into mRNA engineering may improve the efficacy of mRNA-based therapies.

Key takeaways

  • Therapeutic mRNA can be engineered to maintain translation under stress conditions. Stress-aware mRNA design utilizes alternative pathways and structural elements to enhance protein synthesis when canonical translation is impaired.
  • Key regulatory mechanisms, such as upstream open reading frames (uORFs) and internal ribosome entry sites (IRESs), can be integrated into mRNA constructs to promote selective translation during stress.
  • Despite promising strategies, many proposed mRNA engineering techniques lack in vivo validation. There is a significant gap between mechanistic understanding and practical application in therapeutic contexts.

Caveats

  • Most optimization strategies have focused on normal conditions, potentially limiting effectiveness in stressed environments. The review calls for more research into stress-specific mRNA design.
  • Many proposed methods remain unvalidated in clinical settings. The lack of robust evidence for the effectiveness of stress-adaptive designs in vivo is a significant limitation.

Definitions

  • mRNA therapeutics: Therapeutics that utilize messenger RNA to encode proteins for treatment, enabling transient protein expression.
  • stress-responsive translation: Translation mechanisms that adapt to cellular stress conditions, allowing for selective protein synthesis despite global translation inhibition.

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Funding

Competing interests

The author declares no conflicts of interest.
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