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Martin A Gorovsky

Showing results (11-20 of 36) with videos related to

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Journal of Cell Science|January 24, 2008
Tetrahymena IFT122A is not essential for cilia assembly but plays a role in returning IFT proteins from the ciliary tip to the cell bodyChe-Chia Tsao, Martin A Gorovsky
Molecular Biology of the Cell|January 18, 2008
Different effects of Tetrahymena IFT172 domains on anterograde and retrograde intraflagellar transportChe-Chia Tsao, Martin A Gorovsky
The Journal of Biological Chemistry|October 14, 2009
Histone H2B ubiquitylation is not required for histone H3 methylation at lysine 4 in tetrahymenaZhe Wang, Bowen Cui, Martin A Gorovsky
Molecular and Cellular Biology|August 16, 2006
Deposition and function of histone H3 variants in Tetrahymena thermophilaBowen Cui, Yifan Liu, Martin A Gorovsky
Proceedings of the National Academy of Sciences of the United States of America|February 3, 2004
Histone H3 lysine 9 methylation is required for DNA elimination in developing macronuclei in TetrahymenaYifan Liu, Kazufumi Mochizuki, Martin A Gorovsky
The Journal of Cell Biology|October 3, 2002
Tetrahymena thermophila contains a conventional gamma-tubulin that is differentially required for the maintenance of different microtubule-organizing centersYuhua Shang, Bing Li, Martin A Gorovsky
Eukaryotic Cell|December 26, 2006
Endoplasmic reticulum retention signal-dependent glycylation of the Hsp70/Grp170-related Pgp1p in TetrahymenaRong Xie, Kathleen M Clark, Martin A Gorovsky
The Journal of Cell Biology|December 14, 2005
Mutational analyses reveal a novel function of the nucleotide-binding domain of gamma-tubulin in the regulation of basal body biogenesisYuhua Shang, Che-Chia Tsao, Martin A Gorovsky
The Journal of Cell Biology|October 3, 2002
Phosphorylation and an ATP-dependent process increase the dynamic exchange of H1 in chromatinYali Dou, Josephine Bowen, Yifan Liu, et al.
Molecular and Cellular Biology|May 5, 2005
The H1 phosphorylation state regulates expression of CDC2 and other genes in response to starvation in Tetrahymena thermophilaYali Dou, Xiaoyuan Song, Yifan Liu, et al.
Pageof 4

Showing results (11-20 of 36) with videos related to

Sort By:
Pageof 4
Journal of Cell Science|January 24, 2008
Tetrahymena IFT122A is not essential for cilia assembly but plays a role in returning IFT proteins from the ciliary tip to the cell bodyChe-Chia Tsao, Martin A Gorovsky
Molecular Biology of the Cell|January 18, 2008
Different effects of Tetrahymena IFT172 domains on anterograde and retrograde intraflagellar transportChe-Chia Tsao, Martin A Gorovsky
The Journal of Biological Chemistry|October 14, 2009
Histone H2B ubiquitylation is not required for histone H3 methylation at lysine 4 in tetrahymenaZhe Wang, Bowen Cui, Martin A Gorovsky
Molecular and Cellular Biology|August 16, 2006
Deposition and function of histone H3 variants in Tetrahymena thermophilaBowen Cui, Yifan Liu, Martin A Gorovsky
Proceedings of the National Academy of Sciences of the United States of America|February 3, 2004
Histone H3 lysine 9 methylation is required for DNA elimination in developing macronuclei in TetrahymenaYifan Liu, Kazufumi Mochizuki, Martin A Gorovsky
The Journal of Cell Biology|October 3, 2002
Tetrahymena thermophila contains a conventional gamma-tubulin that is differentially required for the maintenance of different microtubule-organizing centersYuhua Shang, Bing Li, Martin A Gorovsky
Eukaryotic Cell|December 26, 2006
Endoplasmic reticulum retention signal-dependent glycylation of the Hsp70/Grp170-related Pgp1p in TetrahymenaRong Xie, Kathleen M Clark, Martin A Gorovsky
The Journal of Cell Biology|December 14, 2005
Mutational analyses reveal a novel function of the nucleotide-binding domain of gamma-tubulin in the regulation of basal body biogenesisYuhua Shang, Che-Chia Tsao, Martin A Gorovsky
The Journal of Cell Biology|October 3, 2002
Phosphorylation and an ATP-dependent process increase the dynamic exchange of H1 in chromatinYali Dou, Josephine Bowen, Yifan Liu, et al.
Molecular and Cellular Biology|May 5, 2005
The H1 phosphorylation state regulates expression of CDC2 and other genes in response to starvation in Tetrahymena thermophilaYali Dou, Xiaoyuan Song, Yifan Liu, et al.
Pageof 4