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Your Environment. Your Health.

Selected Publications

Nucleolar Integrity Group

  1. Blaha*, Stanley RE*, Steitz TA. (2009) Formation of the first peptide bond: The structure of EF-P bound to the 70S ribosome. Science. 325(5943):966-970. *Both authors contributed equally [Abstract Blaha*, Stanley RE*, Steitz TA. (2009) Formation of the first peptide bond: The structure of EF-P bound to the 70S ribosome. Science. 325(5943):966-970. *Both authors contributed equally]
  2. Stanley RE*, Blaha G*, Grodzicki RL, Strickler MD, Steitz TA. (2010) The structures of the anti-tuberculosis antibiotics viomycin and capreomycin bound to the 70S ribosome. Nat Struct Mol Biol. 17(3):289-293. *Both authors contributed equally [Abstract Stanley RE*, Blaha G*, Grodzicki RL, Strickler MD, Steitz TA. (2010) The structures of the anti-tuberculosis antibiotics viomycin and capreomycin bound to the 70S ribosome. Nat Struct Mol Biol. 17(3):289-293. *Both authors contributed equally]
  3. Ragusa MJ*, Stanley RE*, Hurley JH. (2012) Architecture of the Atg17 complex as a scaffold for autophagosome biogenesis. Cell. 151(7):1501-1512. *Both authors contributed equally [Abstract Ragusa MJ*, Stanley RE*, Hurley JH. (2012) Architecture of the Atg17 complex as a scaffold for autophagosome biogenesis. Cell. 151(7):1501-1512. *Both authors contributed equally]
  4. Jao CC, Ragusa MJ, Stanley RE, Hurley JH. (2013) A HORMA domain in Atg13 mediates PI 3-kinase recruitment in autophagy. Proc Natl Acad Sci U S A. 110(14):5486-91. [Abstract Jao CC, Ragusa MJ, Stanley RE, Hurley JH. (2013) A HORMA domain in Atg13 mediates PI 3-kinase recruitment in autophagy. Proc Natl Acad Sci U S A. 110(14):5486-91.]
  5. Stanley RE, Ragusa MJ, Hurley JH. (2014) The beginning of the end: How scaffolds and coalescing vesicles nucleate autophagosome biogenesis. Trends Cell Biol. 24(1):73-81. [Abstract Stanley RE, Ragusa MJ, Hurley JH. (2014) The beginning of the end: How scaffolds and coalescing vesicles nucleate autophagosome biogenesis. Trends Cell Biol. 24(1):73-81.]
  6. Romes, EM, Sobhany, M, Stanley, RE. The Crystal Structure of the Ubiquitin-like Domain of Ribosome Assembly Factor Ytm1 and Characterization of Its Interaction with the AAA-ATPase Midasin. The Journal of biological chemistry 2016 291(2):882-893. [Abstract Romes, EM, Sobhany, M, Stanley, RE. The Crystal Structure of the Ubiquitin-like Domain of Ribosome Assembly Factor Ytm1 and Characterization of Its Interaction with the AAA-ATPase Midasin. The Journal of biological chemistry 2016 291(2):882-893.]
  7. Lo YH, Romes EM, Pillon MC, Sobhany M, Stanley* RE. (2017) Structural Analysis Reveals the Features of Ribosome Assembly Factor Nsa1/WDR74 Important for Localization and Interaction with the AAA-ATPase Rix7/NVL2. Structure. 25(5):762-772 PMID: 28416111 [Abstract Lo YH, Romes EM, Pillon MC, Sobhany M, Stanley* RE. (2017) Structural Analysis Reveals the Features of Ribosome Assembly Factor Nsa1/WDR74 Important for Localization and Interaction with the AAA-ATPase Rix7/NVL2. Structure. 25(5):762-772 PMID: 28416111] 
  8. Pillon MC, Sobhany M, Borngia MJ, Williams JG, and Stanley* RE. (2017) Grc3 Programs the Essential Endoribonuclease Las1 for Specific RNA Cleavage. Proc Natl Acad Sci. PNAS Early Edition doi: 10.1073/pnas.1703133114 PMID: 28652339 [Abstract Pillon MC, Sobhany M, Borngia MJ, Williams JG, and Stanley* RE. (2017) Grc3 Programs the Essential Endoribonuclease Las1 for Specific RNA Cleavage. Proc Natl Acad Sci. PNAS Early Edition doi: 10.1073/pnas.1703133114 PMID: 28652339] 
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