Arlen W. Johnson
Affiliations: | Cell and molecular biology | University of Texas at Austin, Austin, Texas, U.S.A. |
Area:
Molecular Biology, Cell BiologyGoogle:
"Arlen Johnson"Parents
Sign in to add mentorBruce Demple | grad student | Harvard (Chemistry Tree) | |
Richard D. Kolodner | post-doc | (Chemistry Tree) |
Children
Sign in to add traineeJoshua J Black | grad student | 2015- | UT Austin |
Hei N. Ho | grad student | 2000 | UT Austin |
George H. Kallstrom | grad student | 2002 | UT Austin |
John B. Hedges | grad student | 2004 | UT Austin |
Lingna Wang | grad student | 2005 | UT Austin |
Nai-Jung Hung | grad student | 2007 | UT Austin |
Kai-Yin Lo | grad student | 2009 | UT Austin |
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Publications
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Musalgaonkar S, Yelland J, Chitale R, et al. (2023) The Ribosome Assembly Factor Reh1 is Released from the Polypeptide Exit Tunnel in the Pioneer Round of Translation. Biorxiv : the Preprint Server For Biology |
Yelland JN, Bravo JPK, Black JJ, et al. (2022) A single 2'-O-methylation of ribosomal RNA gates assembly of a functional ribosome. Nature Structural & Molecular Biology |
Lin R, Correll CC, Johnson AW. (2022) In vitro characterization of Dhr1 from Saccharomyces cerevisiae. Methods in Enzymology. 673: 77-101 |
Black JJ, Johnson AW. (2021) Release of the ribosome biogenesis factor Bud23 from small subunit precursors in yeast. Rna (New York, N.Y.) |
Black JJ, Johnson AW. (2021) Genetics animates structure: leveraging genetic interactions to study the dynamics of ribosome biogenesis. Current Genetics |
Black JJ, Sardana R, Elmir EW, et al. (2020) Bud23 promotes the final disassembly of the small subunit Processome in Saccharomyces cerevisiae. Plos Genetics. 16: e1009215 |
Musalgaonkar S, Black JJ, Johnson AW. (2019) The L1 stalk is required for efficient export of nascent large ribosomal subunits in yeast. Rna. 25: 1549-1560 |
Musalgaonkar S, Black JJ, Johnson A. (2019) The L1 stalk is required for efficient export of nascent large ribosomal subunits in yeast. Rna (New York, N.Y.) |
Black JJ, Musalgaonkar S, Johnson AW. (2019) Tsr4 Is a Cytoplasmic Chaperone for the Ribosomal Protein Rps2 in Saccharomyces cerevisiae Molecular and Cellular Biology. 39 |
Black JJ, Musalgaonkar S, Johnson AW. (2019) Tsr4 is a cytoplasmic chaperone for the ribosomal protein Rps2 in . Molecular and Cellular Biology |