Suppression of RNA recognition by Toll-like receptors: the impact of nucleoside modification and the evolutionary origin of RNA.

Karikó Katalin, Buckstein Michael, Ni Houping, Weissman Drew

Immunity · 2005 · PMID 16111635 · 인용 2.7k

PubMed ↗DOI ↗

DNA and RNA stimulate the mammalian innate immune system through activation of Toll-like receptors (TLRs). DNA containing methylated CpG motifs, however, is not stimulatory. Selected nucleosides in naturally occurring RNA are also methylated or otherwise modified, but the immunomodulatory effects of these alterations remain untested.

We show that RNA signals through human TLR3, TLR7, and TLR8, but incorporation of modified nucleosides m5C, m6A, m5U, s2U, or pseudouridine ablates activity. Dendritic cells (DCs) exposed to such modified RNA express significantly less cytokines and activation markers than those treated with unmodified RNA. DCs and TLR-expressing cells are potently activated by bacterial and mitochondrial RNA, but not by mammalian total RNA, which is abundant in modified nucleosides.

We conclude that nucleoside modifications suppress the potential of RNA to activate DCs. The innate immune system may therefore detect RNA lacking nucleoside modification as a means of selectively responding to bacteria or necrotic tissue.

🏛️ 거인의 어깨이 분야를 만든 논문들

몸이 RNA를 병원체로 읽어 염증을 일으키던 것이 mRNA 치료제의 가장 큰 벽이었는데, 이 논문은 그 인식을 끄는 스위치를 찾았다 — 자연 RNA에 이미 존재하는 뉴클레오사이드 변형(수도유리딘 등)을 넣으면 톨유사수용체 활성이 사라진다. 2023년 노벨 생리의학상으로 이어진 발견이다.

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