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The EMBO Journal|March 12, 2004
MK2-induced tristetraprolin:14-3-3 complexes prevent stress granule association and ARE-mRNA decayGeorg Stoecklin, Tiffany Stubbs, Nancy Kedersha, et al.
The Journal of Biological Chemistry|September 5, 2006
Eukaryotic initiation factor 2alpha-independent pathway of stress granule induction by the natural product pateamine AYongjun Dang, Nancy Kedersha, Woon-Kai Low, et al.
The Journal of Biological Chemistry|February 5, 2010
Angiogenin-induced tRNA-derived stress-induced RNAs promote stress-induced stress granule assemblyMohamed M Emara, Pavel Ivanov, Tyler Hickman, et al.
The Journal of Experimental Medicine|July 30, 2003
Regulation of cyclooxygenase-2 expression by the translational silencer TIA-1Dan A Dixon, Glen C Balch, Nancy Kedersha, et al.
Molecular and Cellular Biology|August 1, 2007
Ribosomal slowdown mediates translational arrest during cellular divisionGilad Sivan, Nancy Kedersha, Orna Elroy-Stein
Methods (San Diego, Calif.)|April 22, 2015
Methods for the characterization of stress granules in virus infected cellsMarc D Panas, Nancy Kedersha, Gerald M McInerney
Nucleic Acids Research|June 10, 2011
Visualization of single mRNAs reveals temporal association of proteins with microRNA-regulated mRNAJoseph D Shih, Zeev Waks, Nancy Kedersha, et al.
The Journal of Cell Biology|March 30, 2016
G3BP-Caprin1-USP10 complexes mediate stress granule condensation and associate with 40S subunitsNancy Kedersha, Marc D Panas, Christopher A Achorn, et al.
The Journal of Cell Biology|June 22, 2005
Stress granules and processing bodies are dynamically linked sites of mRNP remodelingNancy Kedersha, Georg Stoecklin, Maranatha Ayodele, et al.
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