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Independent aggregation • v2.4.14 • 2026-08-06

AUTHOR CORRECTION: NUCLEOLAR URB1 ENSURES 3′ ETS RRNA REMOVAL TO PREVENT EXOSOME SURVEILLANCE

1 min read • 17 hrs ago • Nature • [src]
SOURCE SPECTRUM: Nature Center
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SOURCE COMPARISON

SourceLatest linked headlineAge
NatureAUTHOR CORRECTION: NUCLEOLAR URB1 ENSURES 3′ ETS RRNA REMOVAL TO PREVENT EXOSOME SURVEILLANCE17 hrs ago
NatureAUTHOR CORRECTION: DURABLE ALL-INORGANIC PEROVSKITE TANDEM PHOTOVOLTAICS17 hrs ago
NatureAUTHOR CORRECTION: COOPERATION CONFLICTS WITH EQUALITY WHEN ALLOCATING PUBLIC GOODS17 hrs ago
NatureLEARNING MILLISECOND PROTEIN DYNAMICS FROM WHAT IS MISSING IN NMR SPECTRA17 hrs ago

WHAT HAPPENED

An author correction has been published in Nature, concerning the role of nucleolar URB1 in ensuring 3′ ETS rRNA removal to prevent exosome surveillance, according to the journal. The correction was published online on August 10, 2026. This correction is significant as it affects the understanding of the molecular mechanisms involved in exosome surveillance.

The original article, now corrected, presented research on the function of URB1 in nucleolar rRNA removal, as reported by Nature. The details of the correction itself are not specified in the available information. Further context or explanation of the correction's implications is not provided in the source material.

This correction is part of the scientific process, where errors or inaccuracies in published research are addressed to maintain the integrity of the scientific record. Understanding the precise mechanisms of rRNA removal and exosome surveillance is crucial for advancing knowledge in molecular biology.

  • Author correction published in Nature regarding nucleolar URB1's role
  • Correction affects understanding of molecular mechanisms in exosome surveillance
  • Published online on August 10, 2026

Read the original source for full detail available at Nature src

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