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Summary Anatomy Item Literature (1223) Expression Attributions Wiki
XB-ANAT-3871

Papers associated with microtubule

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Functional analysis of the microtubule-interacting transcriptome., Sharp JA., Mol Biol Cell. November 1, 2011; 22 (22): 4312-23.              


Tubulin tyrosine ligase structure reveals adaptation of an ancient fold to bind and modify tubulin., Szyk A., Nat Struct Mol Biol. October 23, 2011; 18 (11): 1250-8.            


Actin and microtubules drive differential aspects of planar cell polarity in multiciliated cells., Werner ME., J Cell Biol. October 3, 2011; 195 (1): 19-26.          


A first-passage-time theory for search and capture of chromosomes by microtubules in mitosis., Gopalakrishnan M., Bull Math Biol. October 1, 2011; 73 (10): 2483-506.


Regulation of microtubule dynamics by TOG-domain proteins XMAP215/Dis1 and CLASP., Al-Bassam J., Trends Cell Biol. October 1, 2011; 21 (10): 604-14.


CENP-C recruits M18BP1 to centromeres to promote CENP-A chromatin assembly., Moree B., J Cell Biol. September 19, 2011; 194 (6): 855-71.                            


And the dead shall rise: actin and myosin return to the spindle., Sandquist JC., Dev Cell. September 13, 2011; 21 (3): 410-9.


Microtubule assembly in meiotic extract requires glycogen., Groen AC., Mol Biol Cell. September 1, 2011; 22 (17): 3139-51.            


The roles of maternal Vangl2 and aPKC in Xenopus oocyte and embryo patterning., Cha SW., Development. September 1, 2011; 138 (18): 3989-4000.                  


Augmin promotes meiotic spindle formation and bipolarity in Xenopus egg extracts., Petry S., Proc Natl Acad Sci U S A. August 30, 2011; 108 (35): 14473-8.  


In vitro centromere and kinetochore assembly on defined chromatin templates., Guse A., Nature. August 28, 2011; 477 (7364): 354-8.      


TMBP200, a XMAP215 homologue of tobacco BY-2 cells, has an essential role in plant mitosis., Yasuhara H., Protoplasma. July 1, 2011; 248 (3): 493-502.


Colchicine inhibits cationic dye uptake induced by ATP in P2X2 and P2X7 receptor-expressing cells: implications for its therapeutic action., Marques-da-Silva C., Br J Pharmacol. July 1, 2011; 163 (5): 912-26.


The emerging role of forces in axonal elongation., Suter DM., Prog Neurobiol. July 1, 2011; 94 (2): 91-101.


hnRNP K post-transcriptionally co-regulates multiple cytoskeletal genes needed for axonogenesis., Liu Y., Development. July 1, 2011; 138 (14): 3079-90.                


Insights into the micromechanical properties of the metaphase spindle., Shimamoto Y., Cell. June 24, 2011; 145 (7): 1062-74.


Cohesion fatigue induces chromatid separation in cells delayed at metaphase., Daum JR., Curr Biol. June 21, 2011; 21 (12): 1018-24.


ERK-regulated double cortin-like kinase (DCLK)-short phosphorylation and nuclear translocation stimulate POMC gene expression in endocrine melanotrope cells., Kuribara M., Endocrinology. June 1, 2011; 152 (6): 2321-9.


The spindle assembly function of Caenorhabditis elegans katanin does not require microtubule-severing activity., McNally KP., Mol Biol Cell. May 1, 2011; 22 (9): 1550-60.                


Alzheimer Aβ disrupts the mitotic spindle and directly inhibits mitotic microtubule motors., Borysov SI., Cell Cycle. May 1, 2011; 10 (9): 1397-410.


Microtubule end binding: EBs sense the guanine nucleotide state., Akhmanova A., Curr Biol. April 26, 2011; 21 (8): R283-5.


CK1 activates minus-end-directed transport of membrane organelles along microtubules., Ikeda K., Mol Biol Cell. April 15, 2011; 22 (8): 1321-9.            


Mechanical properties of organelles driven by microtubule-dependent molecular motors in living cells., Bruno L., PLoS One. April 1, 2011; 6 (4): e18332.            


Nup98 regulates bipolar spindle assembly through association with microtubules and opposition of MCAK., Cross MK., Mol Biol Cell. March 1, 2011; 22 (5): 661-72.            


The N-terminal coiled-coil of Ndel1 is a regulated scaffold that recruits LIS1 to dynein., Zyłkiewicz E., J Cell Biol. February 7, 2011; 192 (3): 433-45.            


A role for central spindle proteins in cilia structure and function., Smith KR., Cytoskeleton (Hoboken). February 1, 2011; 68 (2): 112-24.


A nonmotor microtubule binding site in kinesin-5 is required for filament crosslinking and sliding., Weinger JS., Curr Biol. January 25, 2011; 21 (2): 154-60.


Isolation of centrosomes from cultured cells., Reber S., Methods Mol Biol. January 1, 2011; 777 107-16.


Low frequency vibrations disrupt left-right patterning in the Xenopus embryo., Vandenberg LN., PLoS One. January 1, 2011; 6 (8): e23306.                


Growth-arrest-specific protein 2 inhibits cell division in Xenopus embryos., Zhang T., PLoS One. January 1, 2011; 6 (9): e24698.            


TRESK background K(+) channel is inhibited by PAR-1/MARK microtubule affinity-regulating kinases in Xenopus oocytes., Braun G., PLoS One. January 1, 2011; 6 (12): e28119.            


Centrosomal protein of 192 kDa (Cep192) promotes centrosome-driven spindle assembly by engaging in organelle-specific Aurora A activation., Joukov V., Proc Natl Acad Sci U S A. December 7, 2010; 107 (49): 21022-7.      


The fission yeast XMAP215 homolog Dis1p is involved in microtubule bundle organization., Roque H., PLoS One. December 2, 2010; 5 (12): e14201.        


A model for cleavage plane determination in early amphibian and fish embryos., Wühr M., Curr Biol. November 23, 2010; 20 (22): 2040-5.        


The gammaTuRC revisited: a comparative analysis of interphase and mitotic human gammaTuRC redefines the set of core components and identifies the novel subunit GCP8., Teixidó-Travesa N., Mol Biol Cell. November 15, 2010; 21 (22): 3963-72.            


Cep152 interacts with Plk4 and is required for centriole duplication., Hatch EM., J Cell Biol. November 15, 2010; 191 (4): 721-9.          


Xenopus furry contributes to release of microRNA gene silencing., Goto T., Proc Natl Acad Sci U S A. November 9, 2010; 107 (45): 19344-9.                        


Lamin B counteracts the kinesin Eg5 to restrain spindle pole separation during spindle assembly., Goodman B., J Biol Chem. November 5, 2010; 285 (45): 35238-44.        


Pharmacologic inhibition of the anaphase-promoting complex induces a spindle checkpoint-dependent mitotic arrest in the absence of spindle damage., Zeng X., Cancer Cell. October 19, 2010; 18 (4): 382-95.


KHDC1B is a novel CPEB binding partner specifically expressed in mouse oocytes and early embryos., Cai C., Mol Biol Cell. September 15, 2010; 21 (18): 3137-48.                  


DAAM1 is a formin required for centrosome re-orientation during cell migration., Ang SF., PLoS One. September 7, 2010; 5 (9): .              


Subgroup II PAK-mediated phosphorylation regulates Ran activity during mitosis., Bompard G., J Cell Biol. September 6, 2010; 190 (5): 807-22.                    


Human RASSF7 regulates the microtubule cytoskeleton and is required for spindle formation, Aurora B activation and chromosomal congression during mitosis., Recino A., Biochem J. September 1, 2010; 430 (2): 207-13.        


MASTL is the human orthologue of Greatwall kinase that facilitates mitotic entry, anaphase and cytokinesis., Voets E., Cell Cycle. September 1, 2010; 9 (17): 3591-601.


Microtubule actin crosslinking factor 1 regulates the Balbiani body and animal-vegetal polarity of the zebrafish oocyte., Gupta T., PLoS Genet. August 19, 2010; 6 (8): e1001073.              


Aurora kinases and protein phosphatase 1 mediate chromosome congression through regulation of CENP-E., Kim Y., Cell. August 6, 2010; 142 (3): 444-55.          


A minimal midzone protein module controls formation and length of antiparallel microtubule overlaps., Bieling P., Cell. August 6, 2010; 142 (3): 420-32.


Kinesin-1 heavy chain mediates microtubule sliding to drive changes in cell shape., Jolly AL., Proc Natl Acad Sci U S A. July 6, 2010; 107 (27): 12151-6.


A transient asymmetric distribution of XNOA 36 mRNA and the associated spectrin network bisects Xenopus laevis stage I oocytes along the future A/V axis., Vaccaro MC., Eur J Cell Biol. July 1, 2010; 89 (7): 525-36.


MID1 and MID2 are required for Xenopus neural tube closure through the regulation of microtubule organization., Suzuki M., Development. July 1, 2010; 137 (14): 2329-39.                                                      

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