Joan A. Steitz

Molecular Biophysics and Biochemistry Yale University, New Haven, CT 
RNA, Splicing
"Joan A. Steitz"

Mean distance: 7.76 (cluster 32)


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Joan W. Conaway research assistant 1978-1979 Yale (Cell Biology Tree)
Douglas L. Black grad student Yale (Cell Biology Tree)
Ellen Gottlieb grad student Yale (Cell Biology Tree)
Tetsuro Hirose grad student (Cell Biology Tree)
Rachel M. Mitton-Fry grad student
Randall R. Reed grad student (Neurotree)
Richard  A. Young grad student 1979 Yale
Sandra L. Wolin grad student 1985 Yale
Kimberly L. Mowry grad student 1988 Yale
Erik Sontheimer grad student 1992 Yale
David Toczyski grad student 1992 Yale
David A. Wassarman grad student 1992 Yale (FlyTree)
Karen M. Wassarman grad student 1992 Yale
Christopher M. Brennan grad student 2000 Yale
Leo R. Otake grad student 2000 Yale
Gia K. Voeltz grad student 2001 Yale (Cell Biology Tree)
Niamh M. Cahill grad student 2002 Yale
Abhijit A. Patel grad student 2002 Yale
Heidi L. Cook grad student 2005 Yale
Angie S. Grech grad student 2005 Yale
Petra Scamborova grad student 2005 Yale
Kyle Friend grad student 2007 Yale
Dennis M. Mishler grad student 2009 Yale
Jan M. Pawlicki grad student 2009 Yale
Sumit Borah grad student 2010 Yale
Ornchuma Itsathitphaisarn grad student 2012 Yale
Seyed-Fakhreddin Torabi post-doc 2015- Yale School of Medicine
Nigel D. F. Grindley post-doc 1975-1978 Yale
Ian C Eperon post-doc 1981-1984 Yale
Susan J. Baserga post-doc 1988-1993 Yale
A. Gregory Matera post-doc 1990-1993 Yale
Mikko J. Frilander post-doc 1997-2000 Yale
Michael Laughrea research scientist 1977 (Cell Biology Tree)
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Torabi SF, DeGregorio SJ, Steitz JA. (2021) tRNA-like leader-trailer interaction promotes 3'-end maturation of MALAT1. Rna (New York, N.Y.)
Torabi SF, Chen YL, Zhang K, et al. (2021) Structural analyses of an RNA stability element interacting with poly(A). Proceedings of the National Academy of Sciences of the United States of America. 118
Torabi SF, Vaidya AT, Tycowski KT, et al. (2021) RNA stabilization by a poly(A) tail 3'-end binding pocket and other modes of poly(A)-RNA interaction. Science (New York, N.Y.)
Rosa-Mercado NA, Zimmer JT, Apostolidi M, et al. (2020) Hyperosmotic stress alters the RNA polymerase II interactome and induces readthrough transcription despite widespread transcriptional repression. Molecular Cell
Pawlica P, Sheu-Gruttadauria J, MacRae IJ, et al. (2020) How Complementary Targets Expose the microRNA 3' End for Tailing and Trimming during Target-Directed microRNA Degradation. Cold Spring Harbor Symposia On Quantitative Biology
Sheu-Gruttadauria J, Pawlica P, Klum SM, et al. (2019) Structural Basis for Target-Directed MicroRNA Degradation. Molecular Cell
Withers JB, Mondol V, Pawlica P, et al. (2019) Idiosyncrasies of Viral Noncoding RNAs Provide Insights into Host Cell Biology. Annual Review of Virology
Withers JB, Li ES, Vallery TK, et al. (2018) Two herpesviral noncoding PAN RNAs are functionally homologous but do not associate with common chromatin loci. Plos Pathogens. 14: e1007389
Vallery TK, Withers JB, Andoh JA, et al. (2018) KSHV mRNA accumulation in nuclear foci is influenced by viral DNA replication and the viral noncoding PAN RNA. Journal of Virology
Vilborg A, Sabath N, Wiesel Y, et al. (2017) Comparative analysis reveals genomic features of stress-induced transcriptional readthrough. Proceedings of the National Academy of Sciences of the United States of America
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