4.6 Article

Nonsense-mediated mRNA decay uses complementary mechanisms to suppress mRNA and protein accumulation

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LIFE SCIENCE ALLIANCE
卷 5, 期 3, 页码 -

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LIFE SCIENCE ALLIANCE LLC
DOI: 10.26508/lsa.202101217

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  1. National Institutes of Health (NIH)/National Heart, Lung, and Blood Institute (NHLBI) [R01 HL151651]
  2. NIH/National Cancer Institute (NCI) [R01 CA251138]
  3. NIH/NHLBI [R01 HL128239]
  4. NIH/National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) [R01 DK103854]
  5. Blood Cancer Discoveries Grant program through the Leukemia & Lymphoma Society
  6. Mark Foundation for Cancer Research
  7. Paul G Allen Frontiers Group [8023-20]
  8. Deparment of Defense Breast Cancer Research Program [W81XWH20-1- 0596]
  9. Leukemia & Lymphoma Society [1344-18]
  10. NIH/NCI (Cancer Center Support) [P30 CA015704]
  11. NIH/NIGMS [T32 GM007270]

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NMD is an essential quality control pathway that detects and degrades mRNAs with premature termination codons. It not only suppresses mRNA levels, but also effectively limits the accumulation of proteins encoded by these mRNA molecules.
Nonsense-mediated mRNA decay (NMD) is an essential, highly conserved quality control pathway that detects and degrades mRNAs containing premature termination codons. Although the essentiality of NMD is frequently ascribed to its prevention of truncated protein accumulation, the extent to which NMD actually suppresses proteins encoded by NMD-sensitive transcripts is less well-understood than NMD-mediated suppression of mRNA. Here, we describe a reporter system that permits accurate quantification of both mRNA and protein levels via stable integration of paired reporters encoding NMD-sensitive and NMD-insensitive transcripts into the AAVS1 safe harbor loci in human cells. We use this system to demonstrate that NMD suppresses proteins encoded by NMD-sensitive transcripts by up to eightfold more than the mRNA itself. Our data indicate that NMD limits the accumulation of proteins encoded by NMD substrates by mechanisms beyond mRNA degradation, such that even when NMD-sensitive mRNAs escape destruction, their encoded proteins are still effectively suppressed.

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