Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis

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Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis. / Sedgwick, G.G.; Townsend, K.; Martin, A.; Shimwell, N.J.; Grand, R.J.A.; Stewart, G.S.; Nilsson, J.; Turnell, A.S.

In: Oncogene, Vol. 32, No. 39, 2013, p. 4622-4633.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Sedgwick, GG, Townsend, K, Martin, A, Shimwell, NJ, Grand, RJA, Stewart, GS, Nilsson, J & Turnell, AS 2013, 'Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis', Oncogene, vol. 32, no. 39, pp. 4622-4633. https://doi.org/10.1038/onc.2012.501

APA

Sedgwick, G. G., Townsend, K., Martin, A., Shimwell, N. J., Grand, R. J. A., Stewart, G. S., Nilsson, J., & Turnell, A. S. (2013). Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis. Oncogene, 32(39), 4622-4633. https://doi.org/10.1038/onc.2012.501

Vancouver

Sedgwick GG, Townsend K, Martin A, Shimwell NJ, Grand RJA, Stewart GS et al. Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis. Oncogene. 2013;32(39):4622-4633. https://doi.org/10.1038/onc.2012.501

Author

Sedgwick, G.G. ; Townsend, K. ; Martin, A. ; Shimwell, N.J. ; Grand, R.J.A. ; Stewart, G.S. ; Nilsson, J. ; Turnell, A.S. / Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis. In: Oncogene. 2013 ; Vol. 32, No. 39. pp. 4622-4633.

Bibtex

@article{0de5e17370eb49739f9d182bd613b525,
title = "Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis",
abstract = "The anaphase-promoting complex/cyclosome (APC/C) is an ubiquitin ligase that functions during mitosis. Here we identify the transcriptional regulator, transcriptional intermediary factor 1γ, TIF1γ, as an APC/C-interacting protein that regulates APC/C function. TIF1γ is not a substrate for APC/C-dependent ubiquitylation but instead, associates specifically with the APC/C holoenzyme and Cdc20 to affect APC/C activity and progression through mitosis. RNA interference studies indicate that TIF1γ knockdown results in a specific reduction in APC/C ubiquitin ligase activity, the stabilization of APC/C substrates, and an increase in the time taken for cells to progress through mitosis from nuclear envelope breakdown to anaphase. TIF1γ knockdown cells are also characterized by the inappropriate presence of cyclin A at metaphase, and an increase in the number of cells that fail to undergo metaphase-to-anaphase transition. Expression of a small interfering RNA-resistant TIF1γ species relieves the mitotic phenotype imposed by TIF1γ knockdown and allows for mitotic progression. Binding studies indicate that TIF1γ is also a component of the APC/C-mitotic checkpoint complex (MCC), but is not required for MCC dissociation from the APC/C once the spindle assembly checkpoint (SAC) is satisfied. TIF1γ inactivation also results in chromosome misalignment at metaphase and SAC activation; inactivation of the SAC relieves the mitotic block imposed by TIF1γ knockdown. Together these data define novel functions for TIF1γ during mitosis and suggest that a reduction in APC/C ubiquitin ligase activity promotes SAC activation.",
author = "G.G. Sedgwick and K. Townsend and A. Martin and N.J. Shimwell and R.J.A. Grand and G.S. Stewart and J. Nilsson and A.S. Turnell",
year = "2013",
doi = "10.1038/onc.2012.501",
language = "English",
volume = "32",
pages = "4622--4633",
journal = "Oncogene",
issn = "0950-9232",
publisher = "nature publishing group",
number = "39",

}

RIS

TY - JOUR

T1 - Transcriptional intermediary factor 1γ binds to the anaphase-promoting complex/cyclosome and promotes mitosis

AU - Sedgwick, G.G.

AU - Townsend, K.

AU - Martin, A.

AU - Shimwell, N.J.

AU - Grand, R.J.A.

AU - Stewart, G.S.

AU - Nilsson, J.

AU - Turnell, A.S.

PY - 2013

Y1 - 2013

N2 - The anaphase-promoting complex/cyclosome (APC/C) is an ubiquitin ligase that functions during mitosis. Here we identify the transcriptional regulator, transcriptional intermediary factor 1γ, TIF1γ, as an APC/C-interacting protein that regulates APC/C function. TIF1γ is not a substrate for APC/C-dependent ubiquitylation but instead, associates specifically with the APC/C holoenzyme and Cdc20 to affect APC/C activity and progression through mitosis. RNA interference studies indicate that TIF1γ knockdown results in a specific reduction in APC/C ubiquitin ligase activity, the stabilization of APC/C substrates, and an increase in the time taken for cells to progress through mitosis from nuclear envelope breakdown to anaphase. TIF1γ knockdown cells are also characterized by the inappropriate presence of cyclin A at metaphase, and an increase in the number of cells that fail to undergo metaphase-to-anaphase transition. Expression of a small interfering RNA-resistant TIF1γ species relieves the mitotic phenotype imposed by TIF1γ knockdown and allows for mitotic progression. Binding studies indicate that TIF1γ is also a component of the APC/C-mitotic checkpoint complex (MCC), but is not required for MCC dissociation from the APC/C once the spindle assembly checkpoint (SAC) is satisfied. TIF1γ inactivation also results in chromosome misalignment at metaphase and SAC activation; inactivation of the SAC relieves the mitotic block imposed by TIF1γ knockdown. Together these data define novel functions for TIF1γ during mitosis and suggest that a reduction in APC/C ubiquitin ligase activity promotes SAC activation.

AB - The anaphase-promoting complex/cyclosome (APC/C) is an ubiquitin ligase that functions during mitosis. Here we identify the transcriptional regulator, transcriptional intermediary factor 1γ, TIF1γ, as an APC/C-interacting protein that regulates APC/C function. TIF1γ is not a substrate for APC/C-dependent ubiquitylation but instead, associates specifically with the APC/C holoenzyme and Cdc20 to affect APC/C activity and progression through mitosis. RNA interference studies indicate that TIF1γ knockdown results in a specific reduction in APC/C ubiquitin ligase activity, the stabilization of APC/C substrates, and an increase in the time taken for cells to progress through mitosis from nuclear envelope breakdown to anaphase. TIF1γ knockdown cells are also characterized by the inappropriate presence of cyclin A at metaphase, and an increase in the number of cells that fail to undergo metaphase-to-anaphase transition. Expression of a small interfering RNA-resistant TIF1γ species relieves the mitotic phenotype imposed by TIF1γ knockdown and allows for mitotic progression. Binding studies indicate that TIF1γ is also a component of the APC/C-mitotic checkpoint complex (MCC), but is not required for MCC dissociation from the APC/C once the spindle assembly checkpoint (SAC) is satisfied. TIF1γ inactivation also results in chromosome misalignment at metaphase and SAC activation; inactivation of the SAC relieves the mitotic block imposed by TIF1γ knockdown. Together these data define novel functions for TIF1γ during mitosis and suggest that a reduction in APC/C ubiquitin ligase activity promotes SAC activation.

UR - http://www.scopus.com/inward/record.url?scp=84884906650&partnerID=8YFLogxK

U2 - 10.1038/onc.2012.501

DO - 10.1038/onc.2012.501

M3 - Journal article

C2 - 23160376

AN - SCOPUS:84884906650

VL - 32

SP - 4622

EP - 4633

JO - Oncogene

JF - Oncogene

SN - 0950-9232

IS - 39

ER -

ID: 88728714