Tomo Tanaka
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Tomo Tanakacomputer-science Degrees
Computer Science
#11874
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#12638
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Computational Linguistics
#3005
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#3040
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Machine Learning
#5460
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#5532
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Artificial Intelligence
#5896
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#5986
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Computer Science
Tomo Tanaka's Degrees
- PhD Computer Science University of Tokyo
- Masters Computer Science University of Tokyo
- Bachelors Computer Science University of Tokyo
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Why Is Tomo Tanaka Influential?
(Suggest an Edit or Addition)According to Wikipedia, Tomo Tanaka FRSE, born in Japan in 1962, is a professor and research scientist based in the Cell and Molecular Biology unit of School of Life Sciences at the University of Dundee, as well as being a Wellcome Trust Principal Research Fellow.
Tomo Tanaka's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Evidence that the Ipl1-Sli15 (Aurora Kinase-INCENP) Complex Promotes Chromosome Bi-orientation by Altering Kinetochore-Spindle Pole Connections (2002) (802)
- Ordered Recruitment of Transcription and Chromatin Remodeling Factors to a Cell Cycle– and Developmentally Regulated Promoter (1999) (627)
- Loading of an Mcm Protein onto DNA Replication Origins Is Regulated by Cdc6p and CDKs (1997) (545)
- Yeast kinesin-8 depolymerizes microtubules in a length-dependent manner (2006) (427)
- Cohesin ensures bipolar attachment of microtubules to sister centromeres and resists their precocious separation (2000) (358)
- Identification of Cohesin Association Sites at Centromeres and along Chromosome Arms (1999) (330)
- Molecular mechanisms of kinetochore capture by spindle microtubules (2005) (320)
- Modes of spindle pole body inheritance and segregation of the Bfa1p–Bub2p checkpoint protein complex (2001) (301)
- Pds5 cooperates with cohesin in maintaining sister chromatid cohesion (2000) (274)
- Kinetochore recruitment of two nucleolar proteins is required for homolog segregation in meiosis I. (2003) (228)
- Tension between two kinetochores suffices for their bi-orientation on the mitotic spindle (2004) (221)
- Live-Cell Imaging Reveals Replication of Individual Replicons in Eukaryotic Replication Factories (2006) (196)
- Molecular mechanisms of microtubule-dependent kinetochore transport toward spindle poles (2007) (191)
- Four new subunits of the Dam1–Duo1 complex reveal novel functions in sister kinetochore biorientation (2002) (189)
- Kinetochores Coordinate Pericentromeric Cohesion and Early DNA Replication by Cdc7-Dbf4 Kinase Recruitment (2013) (142)
- Kinetochore–microtubule interactions: steps towards bi‐orientation (2010) (140)
- Mps1 Kinase Promotes Sister-Kinetochore Bi-orientation by a Tension-Dependent Mechanism (2007) (132)
- Kinetochore microtubule interaction during S phase in Saccharomyces cerevisiae. (2007) (132)
- Kinetochore capture and bi-orientation on the mitotic spindle (2005) (131)
- Kinetochore-microtubule interactions: the means to the end. (2008) (125)
- The Ndc80 Loop Region Facilitates Formation of Kinetochore Attachment to the Dynamic Microtubule Plus End (2011) (117)
- Kinetochores Generate Microtubules with Distal Plus Ends: Their Roles and Limited Lifetime in Mitosis (2010) (90)
- Kinetochore–microtubule error correction is driven by differentially regulated interaction modes (2015) (84)
- Ipl1-dependent phosphorylation of Dam1 is reduced by tension applied on kinetochores (2009) (80)
- Condensins Promote Chromosome Recoiling during Early Anaphase to Complete Sister Chromatid Separation (2010) (76)
- High-Resolution Replication Profiles Define the Stochastic Nature of Genome Replication Initiation and Termination (2013) (76)
- Bi-orienting chromosomes on the mitotic spindle. (2002) (75)
- The chromosome cycle: coordinating replication and segregation (2005) (62)
- Cnn1 inhibits the interactions between the KMN complexes of the yeast kinetochore (2012) (61)
- Cnn1 inhibits the interactions between the KMN complexes of the yeast kinetochore (2013) (59)
- Chromosome bi-orientation on the mitotic spindle (2005) (55)
- Kinetochore-Dependent Microtubule Rescue Ensures Their Efficient and Sustained Interactions in Early Mitosis (2011) (52)
- Bi-orienting chromosomes: acrobatics on the mitotic spindle (2008) (51)
- The SWI/SNF complex acts to constrain distribution of the centromeric histone variant Cse4 (2011) (48)
- Aurora B-INCENP Localization at Centromeres/Inner Kinetochores Is Required for Chromosome Bi-orientation in Budding Yeast (2019) (45)
- Stochastic association of neighboring replicons creates replication factories in budding yeast (2013) (44)
- Discovery of an Unconventional Centromere in Budding Yeast Redefines Evolution of Point Centromeres (2015) (40)
- Live-cell analysis of kinetochore–microtubule interaction in budding yeast (2010) (39)
- Kinetochore-Microtubule Interactions (2009) (29)
- Spatial regulation and organization of DNA replication within the nucleus (2009) (29)
- Molecular mechanisms facilitating the initial kinetochore encounter with spindle microtubules (2017) (23)
- Smc3 Deacetylation by Hos1 Facilitates Efficient Dissolution of Sister Chromatid Cohesion during Early Anaphase (2017) (20)
- Three wise centromere functions: see no error, hear no break, speak no delay (2013) (20)
- Contractile acto-myosin network on nuclear envelope remnants positions human chromosomes for mitosis (2019) (15)
- Responses of grain filling in spring wheat and temperate-zone rice to temperature: Similarities and differences (2018) (12)
- Second in the Cycles Review Series (2005) (12)
- Live imaging of marked chromosome regions reveals their dynamic resolution and compaction in mitosis (2019) (11)
- High resolution imaging reveals heterogeneity in chromatin states between cells that is not inherited through cell division (2016) (11)
- Three-dimensional electron microscopy analysis of ndc10-1 mutant reveals an aberrant organization of the mitotic spindle and spindle pole body defects in Saccharomyces cerevisiae. (2008) (10)
- Cyclin-Dependent Kinase 1 Is Essential for Muscle Regeneration and Overload Muscle Fiber Hypertrophy (2020) (10)
- Aurora B switches relative strength of kinetochore–microtubule attachment modes for error correction (2021) (9)
- Mechanisms mitigating problems associated with multiple kinetochores on one microtubule in early mitosis (2017) (6)
- Zooming in on chromosome dynamics (2020) (5)
- Contractile actomyosin network on nuclear envelope remnants positions chromosomes for mitosis (2018) (5)
- SWAP, SWITCH, and STABILIZE: Mechanisms of Kinetochore–Microtubule Error Correction (2022) (4)
- Live cell imaging of kinetochore capture by microtubules in budding yeast. (2009) (4)
- Swap and stop – Kinetochores play error correction with microtubules (2022) (3)
- Error correction is driven by direct competition between microtubules for interaction with a kinetochore (2019) (2)
- Erratum: Kinetochore–microtubule error correction is driven by differentially regulated interaction modes (2015) (1)
- Aurora B–INCENP localization at centromeres/inner kinetochores is essential for chromosome bi-orientation in budding yeast (2019) (1)
- Erratum: Kinetochore recruitment of two nucleolar proteins is required for homolog segregation in moeisosi I (Developmental Cell (2003) vol. 4 (535-548)) (2003) (0)
- High resolution imaging reveals heterogeneity in chromatin states between cells that is not inherited through cell division (2016) (0)
- Faculty Opinions recommendation of Sister kinetochores are mechanically fused during meiosis I in yeast. (2015) (0)
- Direct transfer of a kinetochore between microtubules is fundamental to error correction mechanism (2019) (0)
- Faculty Opinions recommendation of Flies without a spindle checkpoint. (2007) (0)
- Aurora B spatial separation from its outer kinetochore substrates stabilizes chromosome biorientation when tension is applied (2023) (0)
- Faculty Opinions recommendation of CRISPR-mediated live imaging of genome editing and transcription. (2021) (0)
- Saccharomyces cerevisiae microtubule interaction during S phase in − Kinetochore Material (2007) (0)
- Faculty Opinions recommendation of Nuclear congression is driven by cytoplasmic microtubule plus end interactions in S. cerevisiae. (2006) (0)
- Faculty Opinions recommendation of CRISPR-Mediated Programmable 3D Genome Positioning and Nuclear Organization. (2019) (0)
- [Molecular mechanisms of kinetchore microtubule interaction]. (2006) (0)
- Faculty Opinions recommendation of The kinetochore protein Moa1 enables cohesion-mediated monopolar attachment at meiosis I. (2005) (0)
- Chapter 9 Kinetochore-Microtubule Interactions (2008) (0)
- Erratum: Cnn1 inhibits the interactions between the KMN complexes of the yeast kinetochore (Nature Cell Biology (2012) 14 (614-624)) (2013) (0)
- Faculty Opinions recommendation of Formation of a dynamic kinetochore- microtubule interface through assembly of the Dam1 ring complex. (2005) (0)
- University of Dundee High resolution imaging reveals heterogeneity in chromatin states between cells that is not inherited through cell (2016) (0)
- Live-cell imaging of marked chromosome regions reveals dynamics of mitotic chromosome resolution and compaction (2018) (0)
- Chromosome biorientation requires Aurora B’s spatial separation from its outer kinetochore substrates but not its turnover at kinetochores (2023) (0)
- Smc3 Deacetylation by Hos1 Facilitates Efficient Dissolution of Sister Chromatid Cohesion during Early Anaphase (2020) (0)
- Chromatin Immunoprecipitation in Budding Yeast (2001) (0)
- A method for manufacturing a spark plug (2012) (0)
- In This Issue (2005) (0)
- Aurora B switches relative strength between kinetochore–microtubule attachment modes to promote error correction (2018) (0)
- 10 GFP-based Microscopic Approaches for Whole Chromosome Analysis in Yeasts (2007) (0)
- Faculty Opinions recommendation of Discovery of unconventional kinetochores in kinetoplastids. (2014) (0)
- Faculty Opinions recommendation of Regulated targeting of protein phosphatase 1 to the outer kinetochore by KNL1 opposes Aurora B kinase. (2011) (0)
- In vitro reconstitution of kinetochore-microtubule interface reveals a fundamental error correction mechanism (2018) (0)
- Faculty Opinions recommendation of The human kinetochore Ska1 complex facilitates microtubule depolymerization-coupled motility. (2009) (0)
- Mechanisms of kinetochore–microtubule error correction (2022) (0)
- Faculty Opinions recommendation of Ndc10 is a platform for inner kinetochore assembly in budding yeast. (2012) (0)
- Faculty Opinions recommendation of The nature of cell-cycle checkpoints: facts and fallacies. (2010) (0)
- Faculty Opinions recommendation of Extensive heterogeneity and intrinsic variation in spatial genome organization. (2020) (0)
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