Year |
Citation |
Score |
2024 |
Thomas EC, Moore JK. Selective regulation of kinesin-5 function by β-tubulin carboxy-terminal tails. The Journal of Cell Biology. 224. PMID 39688542 DOI: 10.1083/jcb.202405115 |
0.34 |
|
2024 |
Siglin AE, Sun S, Moore JK, Tan S, Poenie M, Lear JD, Polenova T, Cooper JA, Williams JC. Correction: Dynein and Dynactin Leverage Their Bivalent Character to Form a High-Affinity Interaction. Plos One. 19: e0304916. PMID 38833489 DOI: 10.1371/journal.pone.0304916 |
0.388 |
|
2023 |
Ceglowski J, Hoffman HK, Neumann AJ, Hoff KJ, McCurdy BL, Moore JK, Prekeris R. TTLL12 is required for primary ciliary axoneme formation in polarized epithelial cells. Embo Reports. PMID 38177908 DOI: 10.1038/s44319-023-00005-5 |
0.39 |
|
2023 |
Ansari S, Gergely ZR, Flynn P, Li G, Moore JK, Betterton MD. Quantifying Yeast Microtubules and Spindles Using the Toolkit for Automated Microtubule Tracking (TAMiT). Biomolecules. 13. PMID 37371519 DOI: 10.3390/biom13060939 |
0.656 |
|
2023 |
Ansari S, Gergely ZR, Flynn P, Li G, Moore JK, Betterton MD. Quantifying yeast microtubules and spindles using the Toolkit for Automated Microtubule Tracking (TAMiT). Biorxiv : the Preprint Server For Biology. PMID 36798368 DOI: 10.1101/2023.02.07.527544 |
0.656 |
|
2022 |
Hoff KJ, Neumann AJ, Moore JK. The molecular biology of tubulinopathies: Understanding the impact of variants on tubulin structure and microtubule regulation. Frontiers in Cellular Neuroscience. 16: 1023267. PMID 36406756 DOI: 10.3389/fncel.2022.1023267 |
0.314 |
|
2020 |
Gudimchuk NB, Ulyanov EV, O'Toole E, Page CL, Vinogradov DS, Morgan G, Li G, Moore JK, Szczesna E, Roll-Mecak A, Ataullakhanov FI, Richard McIntosh J. Mechanisms of microtubule dynamics and force generation examined with computational modeling and electron cryotomography. Nature Communications. 11: 3765. PMID 32724196 DOI: 10.1038/S41467-020-17553-2 |
0.452 |
|
2020 |
Li G, Moore JK. Microtubule dynamics at low temperature: evidence that tubulin recycling limits assembly. Molecular Biology of the Cell. mbcE19110634. PMID 32213119 DOI: 10.1091/Mbc.E19-11-0634 |
0.432 |
|
2019 |
Aiken J, Buscaglia G, Aiken AS, Moore JK, Bates EA. Tubulin mutations in brain development disorders: Why haploinsufficiency does not explain TUBA1A tubulinopathies. Cytoskeleton (Hoboken, N.J.). PMID 31574570 DOI: 10.1002/Cm.21567 |
0.378 |
|
2019 |
Estrem C, Moore JK. Help or hindrance: how do microtubule-based forces contribute to genome damage and repair? Current Genetics. PMID 31501990 DOI: 10.1007/S00294-019-01033-2 |
0.345 |
|
2019 |
Estrem C, Moore JK. Astral microtubule forces alter nuclear organization and inhibit DNA repair in budding yeast. Molecular Biology of the Cell. mbcE18120808. PMID 31067146 DOI: 10.1091/Mbc.E18-12-0808 |
0.343 |
|
2019 |
Fees CP, Moore JK. A unified model for microtubule rescue. Molecular Biology of the Cell. mbcE18080541. PMID 30672721 DOI: 10.1091/Mbc.E18-08-0541 |
0.37 |
|
2018 |
Aiken J, Moore JK, Bates EA. TUBA1A mutations identified in lissencephaly patients dominantly disrupt neuronal migration and impair dynein activity. Human Molecular Genetics. PMID 30517687 DOI: 10.1093/Hmg/Ddy416 |
0.4 |
|
2018 |
Fees CP, Moore JK. Regulation of microtubule dynamic instability by the carboxy-terminal tail of β-tubulin. Life Science Alliance. 1. PMID 29963657 DOI: 10.26508/lsa.201800054 |
0.367 |
|
2017 |
Estrem C, Fees CP, Moore JK. Dynein is regulated by the stability of its microtubule track. The Journal of Cell Biology. PMID 28572117 DOI: 10.1083/Jcb.201611105 |
0.543 |
|
2017 |
Fees CP, Estrem C, Moore JK. High-resolution Imaging and Analysis of Individual Astral Microtubule Dynamics in Budding Yeast. Journal of Visualized Experiments : Jove. PMID 28448000 DOI: 10.3791/55610 |
0.467 |
|
2016 |
Mangan AJ, Sietsema DV, Li D, Moore JK, Citi S, Prekeris R. Cingulin and actin mediate midbody-dependent apical lumen formation during polarization of epithelial cells. Nature Communications. 7: 12426. PMID 27484926 DOI: 10.1038/Ncomms12426 |
0.455 |
|
2016 |
Fees CP, Aiken J, O'Toole ET, Giddings TH, Moore JK. The negatively charged carboxy-terminal tail of β-tubulin promotes proper chromosome segregation. Molecular Biology of the Cell. 27: 1786-96. PMID 27053662 DOI: 10.1091/Mbc.E15-05-0300 |
0.397 |
|
2015 |
Gartz Hanson M, Aiken J, Sietsema DV, Sept D, Bates EA, Niswander L, Moore JK. Novel α-tubulin mutation disrupts neural development and tubulin proteostasis. Developmental Biology. PMID 26658218 DOI: 10.1016/J.Ydbio.2015.11.022 |
0.399 |
|
2015 |
Nithianantham S, Le S, Seto E, Jia W, Leary J, Corbett KD, Moore JK, Al-Bassam J. Tubulin cofactors and Arl2 are cage-like chaperones that regulate the soluble αβ-tubulin pool for microtubule dynamics. Elife. 4. PMID 26208336 DOI: 10.7554/Elife.08811 |
0.496 |
|
2015 |
Nithianantham S, Le S, Seto E, Jia W, Leary J, Corbett KD, Moore JK, Al-Bassam J. Author response: Tubulin cofactors and Arl2 are cage-like chaperones that regulate the soluble αβ-tubulin pool for microtubule dynamics Elife. DOI: 10.7554/Elife.08811.034 |
0.413 |
|
2014 |
Aiken J, Sept D, Costanzo M, Boone C, Cooper JA, Moore JK. Genome-wide analysis reveals novel and discrete functions for tubulin carboxy-terminal tails. Current Biology : Cb. 24: 1295-303. PMID 24835459 DOI: 10.1016/J.Cub.2014.03.078 |
0.587 |
|
2013 |
Moore JK. Stopped in its tracks: negative regulation of the dynein motor by the yeast protein She1. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. 35: 677-82. PMID 23666903 DOI: 10.1002/Bies.201300016 |
0.467 |
|
2013 |
Siglin AE, Sun S, Moore JK, Tan S, Poenie M, Lear JD, Polenova T, Cooper JA, Williams JC. Dynein and dynactin leverage their bivalent character to form a high-affinity interaction. Plos One. 8: e59453. PMID 23577064 DOI: 10.1371/Journal.Pone.0059453 |
0.533 |
|
2011 |
Stuchell-Brereton MD, Siglin A, Li J, Moore JK, Ahmed S, Williams JC, Cooper JA. Functional interaction between dynein light chain and intermediate chain is required for mitotic spindle positioning. Molecular Biology of the Cell. 22: 2690-701. PMID 21633107 DOI: 10.1091/Mbc.E11-01-0075 |
0.717 |
|
2010 |
Moore JK, Chudalayandi P, Heil-Chapdelaine RA, Cooper JA. The spindle position checkpoint is coordinated by the Elm1 kinase. The Journal of Cell Biology. 191: 493-503. PMID 21041444 DOI: 10.1083/Jcb.201006092 |
0.678 |
|
2010 |
Moore JK, Cooper JA. Coordinating mitosis with cell polarity: Molecular motors at the cell cortex. Seminars in Cell & Developmental Biology. 21: 283-9. PMID 20109571 DOI: 10.1016/J.Semcdb.2010.01.020 |
0.596 |
|
2009 |
Moore JK, Magidson V, Khodjakov A, Cooper JA. The spindle position checkpoint requires positional feedback from cytoplasmic microtubules. Current Biology : Cb. 19: 2026-30. PMID 19913426 DOI: 10.1016/J.Cub.2009.10.020 |
0.649 |
|
2009 |
Moore JK, Stuchell-Brereton MD, Cooper JA. Function of dynein in budding yeast: mitotic spindle positioning in a polarized cell. Cell Motility and the Cytoskeleton. 66: 546-55. PMID 19402153 DOI: 10.1002/Cm.20364 |
0.74 |
|
2009 |
Moore JK, Sept D, Cooper JA. Neurodegeneration mutations in dynactin impair dynein-dependent nuclear migration. Proceedings of the National Academy of Sciences of the United States of America. 106: 5147-52. PMID 19279216 DOI: 10.1073/Pnas.0810828106 |
0.579 |
|
2008 |
Moore JK, Li J, Cooper JA. Dynactin function in mitotic spindle positioning. Traffic (Copenhagen, Denmark). 9: 510-27. PMID 18221362 DOI: 10.1111/J.1600-0854.2008.00710.X |
0.642 |
|
2007 |
Moore JK, Miller RK. The cyclin-dependent kinase Cdc28p regulates multiple aspects of Kar9p function in yeast. Molecular Biology of the Cell. 18: 1187-202. PMID 17251549 DOI: 10.1091/Mbc.E06-04-0360 |
0.506 |
|
2006 |
Miller RK, D'Silva S, Moore JK, Goodson HV. The CLIP-170 orthologue Bik1p and positioning the mitotic spindle in yeast. Current Topics in Developmental Biology. 76: 49-87. PMID 17118263 DOI: 10.1016/S0070-2153(06)76002-1 |
0.52 |
|
2006 |
Moore JK, D'Silva S, Miller RK. The CLIP-170 homologue Bik1p promotes the phosphorylation and asymmetric localization of Kar9p. Molecular Biology of the Cell. 17: 178-91. PMID 16236795 DOI: 10.1091/Mbc.E05-06-0565 |
0.476 |
|
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