He et al., 2011
Ca2+ buffering at a drosophila larval synaptic terminal
He, Tao, Lnenicka, Gregory A.
Synapse. 2011;65(7):687-93.
PUBMED:21218450 doi:10.1002/syn.20909
Ca2+ buffering at a drosophila larval synaptic terminal
He, Tao, Lnenicka, Gregory A.
Synapse. 2011;65(7):687-93.
PUBMED:21218450 doi:10.1002/syn.20909
The effect of compressive deformations on the rate of build-up of oxygen in isolated skeletal muscle cells
Leopold, Efrat, Sopher, Ran, Gefen, Amit
Med Eng Phys. 2011;33(9):1072-8.
PUBMED:21600830 doi:10.1016/j.medengphy.2011.04.008
Cooperative Nuclear Localization Sequences Lend a Novel Role to the N-Terminal Region of MSH6
Gassman, Natalie R., Clodfelter, Jill E., McCauley, Anita K., Bonin, Keith, Salsbury, Freddie R., Jr., Scarpinato, Karin D.
PLoS ONE. 2011;6(3):e17907.
PUBMED:21437237 doi:10.1371/journal.pone.0017907
The emergence of sarcomeric, graded-polarity and spindle-like patterns in bundles of short cytoskeletal polymers and two opposite molecular motors
Craig, E. M., Dey, S., Mogilner, A.
J Phys Condens Matter. 2011;23(37):374102.
PUBMED:21862843 doi: 10.1088/0953-8984/23/37/374102
Lysosomal Pathology and Osteopetrosis upon Loss of H+-Driven Lysosomal Cl– Accumulation
Weinert, Stefanie, Jabs, Sabrina, Supanchart, Chayarop, Schweizer, Michaela, Gimber, Niclas, Richter, Martin, Rademann, Jörg, Stauber, Tobias, Kornak, Uwe, Jentsch, Thomas J.
Science. 2010;328(5984):1401-3.
PUBMED:20430974 doi:10.1126/science.1188072
MLCK-dependent exchange and actin binding region-dependent anchoring of ZO-1 regulate tight junction barrier function
Yu, Dan, Marchiando, Amanda M., Weber, Christopher R., Raleigh, David R., Wang, Yingmin, Shen, Le, Turner, Jerrold R.
PNAS, vol. 107, no. 18, 8237-8241 (2010). Published online, April 19, 2010, doi:10.1072/pnas.0908869107.
PUBMED:20404178 doi:10.1073/pnas.0908869107
VCell BioModels referenced in publication:
user: dyu, model name: cacodeltaABR
user: dyu, model name: mouseZO1control&PIK
user: dyu, model name: latrunculin
Modeling capping protein FRAP and CALI experiments reveals in vivo regulation of actin dynamics
Kapustina, M., Vitriol, E., Elston, T. C., Loew, L. M., Jacobson, K.
Cytoskeleton (Hoboken).2010 Aug;67(8):519-34.
PUBMED:20623665 doi:10.1002/cm.20463
VCell BioModels referenced in publication:
user: marynka, model name: CALI
A mitotic kinesin-6, Pav-KLP, mediates interdependent cortical reorganization and spindle dynamics in Drosophila embryos
Sommi, P., Ananthakrishnan, R., Cheerambathur, D. K., Kwon, M., Morales-Mulia, S., Brust-Mascher, I., Mogilner, A.
J Cell Sci. 2010;123(Pt 11):1862-72.
PUBMED:20442250 doi:10.1242/jcs.064048
Putting one step before the other: Distinct activation pathways for Cdk1 and Cdk2 bring order to the mammalian cell cycle
Merrick, Karl A., Fisher, Robert P.
Cell Cycle. 2010;9(4):706-14.
PUBMED:20139727 doi:10.4161/cc.9.4.10732
Caveolin-1-dependent occludin endocytosis is required for TNF-induced tight junction regulation in vivo
Marchiando, A. M., Shen, L., Graham, W. V., Weber, C. R., Schwarz, B. T., Austin, J. R., 2nd, Raleigh, D. R., Guan, Y., Watson, A. J., Montrose, M. H., Turner, J. R.
J Cell Biol. 2010;189(1):111-26.
PUBMED:20351069 doi:10.1083/jcb.200902153