Rho-dependent control of the Citron kinase, Sticky, drives midbody ring maturation
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Title
Rho-dependent control of the Citron kinase, Sticky, drives midbody ring maturation
Authors
Keywords
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Journal
MOLECULAR BIOLOGY OF THE CELL
Volume 30, Issue 17, Pages 2185-2204
Publisher
American Society for Cell Biology (ASCB)
Online
2019-06-06
DOI
10.1091/mbc.e19-04-0194
References
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- Mechanistic Insights into the Anchorage of the Contractile Ring by Anillin and Mid1
- (2015) Lingfei Sun et al. DEVELOPMENTAL CELL
- Cytokinesis in Animal Cells
- (2015) Pier Paolo D’Avino et al. Cold Spring Harbor Perspectives in Biology
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- (2014) M. J. Renshaw et al. Open Biology
- Physiological roles of Rho and Rho effectors in mammals
- (2013) Dean Thumkeo et al. EUROPEAN JOURNAL OF CELL BIOLOGY
- Opposing actions of septins and Sticky on Anillin promote the transition from contractile to midbody ring
- (2013) Nour El Amine et al. JOURNAL OF CELL BIOLOGY
- Citron kinase mediates transition from constriction to abscission through its coiled-coil domain
- (2013) S. Watanabe et al. JOURNAL OF CELL SCIENCE
- Citron kinase controls a molecular network required for midbody formation in cytokinesis
- (2013) Z. I. Bassi et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- Cytokinesis in Animal Cells
- (2012) Rebecca A. Green et al. Annual Review of Cell and Developmental Biology
- Anillin Acts as a Bifunctional Linker Coordinating Midbody Ring Biogenesis during Cytokinesis
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- (2011) Marta Gai et al. MOLECULAR BIOLOGY OF THE CELL
- Phenotypic profiling of the human genome by time-lapse microscopy reveals cell division genes
- (2010) Beate Neumann et al. NATURE
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- Anillin: a pivotal organizer of the cytokinetic machinery: Figure 1
- (2008) Gilles R.X. Hickson et al. BIOCHEMICAL SOCIETY TRANSACTIONS
- Anillin Is a Scaffold Protein That Links RhoA, Actin, and Myosin during Cytokinesis
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