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Jesse Gatlin
Jesse Gatlin
Professor of Molecular Biology, University of Wyoming
Verified email at uwyo.edu - Homepage
Title
Cited by
Cited by
Year
Changes in cytoplasmic volume are sufficient to drive spindle scaling
J Hazel, K Krutkramelis, P Mooney, M Tomschik, K Gerow, J Oakey, ...
Science 342 (6160), 853-856, 2013
1892013
Condensin regulates the stiffness of vertebrate centromeres
SA Ribeiro, JC Gatlin, Y Dong, A Joglekar, L Cameron, DF Hudson, ...
Molecular biology of the cell 20 (9), 2371-2380, 2009
1512009
Spindle assembly in the absence of a RanGTP gradient requires localized CPC activity
TJ Maresca, AC Groen, JC Gatlin, R Ohi, TJ Mitchison, ED Salmon
Current Biology 19 (14), 1210-1215, 2009
1072009
Nanoparticle targeting and cholesterol flux through scavenger receptor type B-1 inhibits cellular exosome uptake
MP Plebanek, RK Mutharasan, O Volpert, A Matov, JC Gatlin, CS Thaxton
Scientific reports 5 (1), 15724, 2015
962015
Growth cone collapse induced by semaphorin 3A requires 12/15-lipoxygenase
K Mikule, JC Gatlin, BA de la Houssaye, KH Pfenninger
Journal of Neuroscience 22 (12), 4932-4941, 2002
932002
Spindle fusion requires dynein-mediated sliding of oppositely oriented microtubules
JC Gatlin, A Matov, TJ Maresca, AC Groen, DJ Needleman, G Danuser, ...
Current Biology 19 (4), 287-296, 2009
892009
Microtubule motors in eukaryotic spindle assembly and maintenance
JC Gatlin, K Bloom
Seminars in cell & developmental biology 21 (3), 248-254, 2010
842010
NPY and its involvement in axon guidance, neurogenesis, and feeding
T Hökfelt, D Stanic, SD Sanford, JC Gatlin, I Nilsson, G Paratcha, F Ledda, ...
Nutrition 24 (9), 860-868, 2008
802008
Myristoylated, alanine-rich C-kinase substrate phosphorylation regulates growth cone adhesion and pathfinding
JC Gatlin, A Estrada-Bernal, SD Sanford, KH Pfenninger
Molecular biology of the cell 17 (12), 5115-5130, 2006
702006
Ribozyme cleavage reveals connections between mRNA release from the site of transcription and pre-mRNA processing
G Bird, N Fong, JC Gatlin, S Farabaugh, DL Bentley
Molecular cell 20 (5), 747-758, 2005
612005
Centrosomal clustering contributes to chromosomal instability and cancer
A Milunović-Jevtić, P Mooney, T Sulerud, J Bisht, JC Gatlin
Current opinion in biotechnology 40, 113-118, 2016
512016
Directly probing the mechanical properties of the spindle and its matrix
JC Gatlin, A Matov, G Danuser, TJ Mitchison, ED Salmon
Journal of cell biology 188 (4), 481-489, 2010
512010
Functional overlap of microtubule assembly factors in chromatin-promoted spindle assembly
AC Groen, TJ Maresca, JC Gatlin, ED Salmon, TJ Mitchison
Molecular biology of the cell 20 (11), 2766-2773, 2009
482009
Dynamic adhesions and MARCKS in melanoma cells
A Estrada-Bernal, JC Gatlin, S Sunpaweravong, KH Pfenninger
Journal of cell science 122 (13), 2300-2310, 2009
452009
Growth cone responses to growth and chemotropic factors
SD Sanford, JC Gatlin, T Hökfelt, KH Pfenninger
European Journal of Neuroscience 28 (2), 268-278, 2008
432008
Eicosanoid Activation of Protein Kinase C ϵ: INVOLVEMENT IN GROWTH CONE REPELLENT SIGNALING
K Mikule, S Sunpaweravong, JC Gatlin, KH Pfenninger
Journal of Biological Chemistry 278 (23), 21168-21177, 2003
422003
Nucleoplasmin is a limiting component in the scaling of nuclear size with cytoplasmic volume
P Chen, M Tomschik, KM Nelson, J Oakey, JC Gatlin, DL Levy
Journal of Cell Biology 218 (12), 4063-4078, 2019
362019
Fabrication of Functional Biomaterial Microstructures by In situ Photopolymerization and Photodegradation
PJ LeValley, B Noren, PM Kharkar, AM Kloxin, JC Gatlin, J Oakey
ACS Biomaterials Science & Engineering, 2018
292018
In vivo mitotic spindle scaling can be modulated by changing the levels of a single protein: the microtubule polymerase XMAP215
A Milunovic-Jevtic, P Jevtic, DL Levy, JC Gatlin
Molecular biology of the cell 29 (11), 1311-1317, 2018
252018
Microtubule growth rates are sensitive to global and local changes in microtubule plus-end density
ZM Geisterfer, DY Zhu, TJ Mitchison, J Oakey, JC Gatlin
Current Biology 30 (15), 3016-3023. e3, 2020
232020
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