Published in J Cell Biol on January 25, 2010
The centrosome cycle: Centriole biogenesis, duplication and inherent asymmetries. Nat Cell Biol (2011) 3.17
Cep152 interacts with Plk4 and is required for centriole duplication. J Cell Biol (2010) 2.45
Cep152 acts as a scaffold for recruitment of Plk4 and CPAP to the centrosome. J Cell Biol (2010) 2.33
3D-structured illumination microscopy provides novel insight into architecture of human centrosomes. Biol Open (2012) 2.23
Mps1 directs the assembly of Cdc20 inhibitory complexes during interphase and mitosis to control M phase timing and spindle checkpoint signaling. J Cell Biol (2010) 2.07
Aurora kinases and protein phosphatase 1 mediate chromosome congression through regulation of CENP-E. Cell (2010) 2.00
The structure of the plk4 cryptic polo box reveals two tandem polo boxes required for centriole duplication. Structure (2012) 1.87
Plk4 phosphorylates Ana2 to trigger Sas6 recruitment and procentriole formation. Curr Biol (2014) 1.76
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Degradation of Cep68 and PCNT cleavage mediate Cep215 removal from the PCM to allow centriole separation, disengagement and licensing. Nat Cell Biol (2014) 1.55
Inducible, reversible system for the rapid and complete degradation of proteins in mammalian cells. Proc Natl Acad Sci U S A (2012) 1.33
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Mutations in PLK4, encoding a master regulator of centriole biogenesis, cause microcephaly, growth failure and retinopathy. Nat Genet (2014) 1.21
Direct interaction of Plk4 with STIL ensures formation of a single procentriole per parental centriole. Nat Commun (2014) 1.18
The Protein Phosphatase 2A regulatory subunit Twins stabilizes Plk4 to induce centriole amplification. J Cell Biol (2011) 1.16
Protein phosphatase 2A-SUR-6/B55 regulates centriole duplication in C. elegans by controlling the levels of centriole assembly factors. Dev Cell (2011) 1.16
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The centriole duplication cycle. Philos Trans R Soc Lond B Biol Sci (2014) 1.08
Emerging regulatory mechanisms in ubiquitin-dependent cell cycle control. J Cell Sci (2012) 1.06
p53 protects against genome instability following centriole duplication failure. J Cell Biol (2015) 1.05
Centrosomes, chromosome instability (CIN) and aneuploidy. Curr Opin Cell Biol (2012) 1.04
Direct kinetochore-spindle pole connections are not required for chromosome segregation. J Cell Biol (2014) 1.03
Polo-like kinase 4: the odd one out of the family. Cell Div (2010) 1.03
Binding of STIL to Plk4 activates kinase activity to promote centriole assembly. J Cell Biol (2015) 1.02
Plk4-dependent phosphorylation of STIL is required for centriole duplication. Biol Open (2015) 0.99
Polo-like kinase 4 controls centriole duplication but does not directly regulate cytokinesis. Mol Biol Cell (2012) 0.99
SCFSlimb ubiquitin ligase suppresses condensin II-mediated nuclear reorganization by degrading Cap-H2. J Cell Biol (2013) 0.96
Bimodal activation of BubR1 by Bub3 sustains mitotic checkpoint signaling. Proc Natl Acad Sci U S A (2014) 0.96
Centrosome dysfunction contributes to chromosome instability, chromoanagenesis, and genome reprograming in cancer. Front Oncol (2013) 0.96
Polo-like kinase 4 autodestructs by generating its Slimb-binding phosphodegron. Curr Biol (2013) 0.95
SAPK pathways and p53 cooperatively regulate PLK4 activity and centrosome integrity under stress. Nat Commun (2013) 0.92
Centriole duplication: A lesson in self-control. Cell Cycle (2010) 0.92
Spindle formation in the mouse embryo requires Plk4 in the absence of centrioles. Dev Cell (2013) 0.90
Centriole assembly and the role of Mps1: defensible or dispensable? Cell Div (2011) 0.88
CDK11(p58) is required for centriole duplication and Plk4 recruitment to mitotic centrosomes. PLoS One (2011) 0.88
STIL binding to Polo-box 3 of PLK4 regulates centriole duplication. Elife (2015) 0.88
SmSak, the second Polo-like kinase of the helminth parasite Schistosoma mansoni: conserved and unexpected roles in meiosis. PLoS One (2012) 0.87
Two Polo-like kinase 4 binding domains in Asterless perform distinct roles in regulating kinase stability. J Cell Biol (2015) 0.86
The life cycle of centrioles. Cold Spring Harb Symp Quant Biol (2011) 0.85
Autoinhibition and relief mechanism for Polo-like kinase 4. Proc Natl Acad Sci U S A (2015) 0.85
The C. elegans F-box proteins LIN-23 and SEL-10 antagonize centrosome duplication by regulating ZYG-1 levels. J Cell Sci (2012) 0.84
Centrosome amplification in CHO and DT40 cells by inactivation of cyclin-dependent kinases. Cytoskeleton (Hoboken) (2011) 0.84
E2F activators signal and maintain centrosome amplification in breast cancer cells. Mol Cell Biol (2014) 0.83
Transient PLK4 overexpression accelerates tumorigenesis in p53-deficient epidermis. Nat Cell Biol (2015) 0.82
Male hypogonadism and germ cell loss caused by a mutation in Polo-like kinase 4. Endocrinology (2011) 0.82
Plk4/SAK/ZYG-1 in the regulation of centriole duplication. F1000 Biol Rep (2010) 0.82
KAT2A/KAT2B-targeted acetylome reveals a role for PLK4 acetylation in preventing centrosome amplification. Nat Commun (2016) 0.81
PIPKIγ targets to the centrosome and restrains centriole duplication. J Cell Sci (2014) 0.81
Polo-like kinase 4 inhibition: a strategy for cancer therapy? Cancer Cell (2014) 0.79
Loss of KLF14 triggers centrosome amplification and tumorigenesis. Nat Commun (2015) 0.79
A novel role for Plk4 in regulating cell spreading and motility. Oncogene (2014) 0.79
CDK1 Prevents Unscheduled PLK4-STIL Complex Assembly in Centriole Biogenesis. Curr Biol (2016) 0.79
Exploring aigialomycin d and its analogues as protein kinase inhibitors for cancer targets. ACS Med Chem Lett (2011) 0.78
Mitotic Kinases and p53 Signaling. Biochem Res Int (2012) 0.78
Quantitative analysis of human centrosome architecture by targeted proteomics and fluorescence imaging. EMBO J (2016) 0.78
MDM1 is a microtubule-binding protein that negatively regulates centriole duplication. Mol Biol Cell (2015) 0.77
Truncation of POC1A associated with short stature and extreme insulin resistance. J Mol Endocrinol (2015) 0.76
The PLK4-STIL-SAS-6 module at the core of centriole duplication. Biochem Soc Trans (2016) 0.75
Casein Kinase II is required for proper cell division and acts as a negative regulator of centrosome duplication in C. elegans embryos. Biol Open (2016) 0.75
DNA replication licensing factor Cdc6 and Plk4 kinase antagonistically regulate centrosome duplication via Sas-6. Nat Commun (2017) 0.75
CRL4WDR1 Controls Polo-like Kinase Protein Abundance to Promote Bilobe Duplication, Basal Body Segregation and Flagellum Attachment in Trypanosoma brucei. PLoS Pathog (2017) 0.75
A key centriole assembly interaction interface between human PLK4 and STIL appears to not be conserved in flies. Biol Open (2017) 0.75
Expression of Polo-Like Kinase 4(PLK4) in Breast Cancer and Its Response to Taxane-Based Neoadjuvant Chemotherapy. J Cancer (2016) 0.75
Identification of a novel Polo-like kinase 1 inhibitor that specifically blocks the functions of Polo-Box domain. Oncotarget (2016) 0.75
Promotion and Suppression of Centriole Duplication Are Catalytically Coupled through PLK4 to Ensure Centriole Homeostasis. Cell Rep (2016) 0.75
A centrosome interactome provides insight into organelle assembly and reveals a non-duplication role for Plk4. Nat Commun (2016) 0.75
Maintaining Genome Stability in Defiance of Mitotic DNA Damage. Front Genet (2016) 0.75
Everything in moderation: Proteolytic regulation of centrosome duplication. Worm (2013) 0.75
Protein Phosphatase 1 Down Regulates ZYG-1 Levels to Limit Centriole Duplication. PLoS Genet (2017) 0.75
Ubiquitin, the centrosome, and chromosome segregation. Chromosome Res (2016) 0.75
The AAA+ ATPase TRIP13 remodels HORMA domains through N-terminal engagement and unfolding. EMBO J (2017) 0.75
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A mechanism linking extra centrosomes to chromosomal instability. Nature (2009) 9.45
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The Polo kinase Plk4 functions in centriole duplication. Nat Cell Biol (2005) 5.84
Centrosome aberrations: cause or consequence of cancer progression? Nat Rev Cancer (2002) 4.88
Centrosome amplification can initiate tumorigenesis in flies. Cell (2008) 4.62
SAK/PLK4 is required for centriole duplication and flagella development. Curr Biol (2005) 4.52
A versatile nanotrap for biochemical and functional studies with fluorescent fusion proteins. Mol Cell Proteomics (2007) 4.28
Dynamics of centromere and kinetochore proteins; implications for checkpoint signaling and silencing. Curr Biol (2004) 3.65
Global mapping of the topography and magnitude of proteolytic events in apoptosis. Cell (2008) 3.64
Control of meiotic and mitotic progression by the F box protein beta-Trcp1 in vivo. Dev Cell (2003) 3.62
Multipolar spindle pole coalescence is a major source of kinetochore mis-attachment and chromosome mis-segregation in cancer cells. PLoS One (2009) 3.36
Overexpressing centriole-replication proteins in vivo induces centriole overduplication and de novo formation. Curr Biol (2007) 3.11
The SCF Slimb ubiquitin ligase regulates Plk4/Sak levels to block centriole reduplication. J Cell Biol (2009) 2.43
Chemical genetics reveals the requirement for Polo-like kinase 1 activity in positioning RhoA and triggering cytokinesis in human cells. Proc Natl Acad Sci U S A (2007) 2.37
The SCF/Slimb ubiquitin ligase limits centrosome amplification through degradation of SAK/PLK4. Curr Biol (2008) 2.33
Origins and consequences of centrosome aberrations in human cancers. Int J Cancer (2006) 2.31
Truncating APC mutations have dominant effects on proliferation, spindle checkpoint control, survival and chromosome stability. J Cell Sci (2004) 2.09
Plk4 haploinsufficiency causes mitotic infidelity and carcinogenesis. Nat Genet (2005) 1.97
Automatic validation of phosphopeptide identifications from tandem mass spectra. Anal Chem (2007) 1.70
Centrosome dysfunction in Drosophila neural stem cells causes tumors that are not due to genome instability. Curr Biol (2008) 1.64
Centriole overduplication through the concurrent formation of multiple daughter centrioles at single maternal templates. Oncogene (2007) 1.52
Ab ovo or de novo? Mechanisms of centriole duplication. Mol Cells (2009) 1.43
Comparative expression of the mitotic regulators SAK and PLK in colorectal cancer. Ann Surg Oncol (2001) 1.32
Sak/Plk4 and mitotic fidelity. Oncogene (2005) 1.27
Constitutive expression of murine Sak-a suppresses cell growth and induces multinucleation. Mol Cell Biol (1996) 1.26
Cullin 1 functions as a centrosomal suppressor of centriole multiplication by regulating polo-like kinase 4 protein levels. Cancer Res (2009) 1.14
Improving protein identification sensitivity by combining MS and MS/MS information for shotgun proteomics using LTQ-Orbitrap high mass accuracy data. Anal Chem (2008) 1.13
Sak serine-threonine kinase acts as an effector of Tec tyrosine kinase. J Biol Chem (2001) 1.01
Onset and progression in inherited ALS determined by motor neurons and microglia. Science (2006) 9.42
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Astrocytes as determinants of disease progression in inherited amyotrophic lateral sclerosis. Nat Neurosci (2008) 5.89
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Rethinking ALS: the FUS about TDP-43. Cell (2009) 4.71
Propagation of centromeric chromatin requires exit from mitosis. J Cell Biol (2007) 4.60
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A standardized kinesin nomenclature. J Cell Biol (2004) 4.43
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Centromere-specific assembly of CENP-a nucleosomes is mediated by HJURP. Cell (2009) 4.22
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ALS-causing SOD1 mutants generate vascular changes prior to motor neuron degeneration. Nat Neurosci (2008) 3.78
Decoding the links between mitosis, cancer, and chemotherapy: The mitotic checkpoint, adaptation, and cell death. Cancer Cell (2005) 3.69
Lethality to human cancer cells through massive chromosome loss by inhibition of the mitotic checkpoint. Proc Natl Acad Sci U S A (2004) 3.69
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Motoneuron death triggered by a specific pathway downstream of Fas. potentiation by ALS-linked SOD1 mutations. Neuron (2002) 3.31
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Unstable kinetochore-microtubule capture and chromosomal instability following deletion of CENP-E. Dev Cell (2002) 3.23
Aurora B is enriched at merotelic attachment sites, where it regulates MCAK. Curr Biol (2006) 3.22
Centromere-associated protein-E is essential for the mammalian mitotic checkpoint to prevent aneuploidy due to single chromosome loss. J Cell Biol (2003) 3.15
Mutant SOD1 causes motor neuron disease independent of copper chaperone-mediated copper loading. Nat Neurosci (2002) 3.09
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Understanding the role of TDP-43 and FUS/TLS in ALS and beyond. Curr Opin Neurobiol (2011) 2.48
Activating and silencing the mitotic checkpoint through CENP-E-dependent activation/inactivation of BubR1. Cell (2003) 2.47
Cep152 interacts with Plk4 and is required for centriole duplication. J Cell Biol (2010) 2.45
ZW10 links mitotic checkpoint signaling to the structural kinetochore. J Cell Biol (2005) 2.36
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Unstable microtubule capture at kinetochores depleted of the centromere-associated protein CENP-F. EMBO J (2005) 1.48
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Requirements for NuMA in maintenance and establishment of mammalian spindle poles. J Cell Biol (2009) 1.47
Mutant dynein (Loa) triggers proprioceptive axon loss that extends survival only in the SOD1 ALS model with highest motor neuron death. Proc Natl Acad Sci U S A (2008) 1.45
Human Zwint-1 specifies localization of Zeste White 10 to kinetochores and is essential for mitotic checkpoint signaling. J Biol Chem (2004) 1.44