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Plos Computational Biology|May 20, 2024
Competition between physical search and a weak-to-strong transition rate-limits kinesin binding timesTrini Nguyen, Babu Reddy Janakaloti Narayanareddy, Steven P Gross, et al.Plos One|November 20, 2008
BicaudalD actively regulates microtubule motor activity in lipid droplet transportKristoffer S Larsen, Jing Xu, Silvia Cermelli, et al.Traffic (Copenhagen, Denmark)|August 2, 2011
Mitochondrial cholesterol: a connection between caveolin, metabolism, and diseaseMarta Bosch, Montserrat Marí, Steven P Gross, et al.Traffic (Copenhagen, Denmark)|April 1, 2008
Tuning microtubule-based transport through filamentous MAPs: the problem of dyneinMichael Vershinin, Jing Xu, David S Razafsky, et al.Journal of Neurology & Neuromedicine|November 24, 2018
Axonal Transport: A Constrained SystemClare C Yu, Babu J N Reddy, Juliana C Wortman, et al.Communications Biology|February 13, 2025
Multiple kinesins speed up cargo transport in crowded environments by sharing loadYa-Ting Huang, Michio Tomishige, Steven P Gross, et al.Cell|April 21, 2010
LIS1 and NudE induce a persistent dynein force-producing stateRichard J McKenney, Michael Vershinin, Ambarish Kunwar, et al.Traffic (Copenhagen, Denmark)|March 29, 2014
A biophysical analysis of mitochondrial movement: differences between transport in neuronal cell bodies versus processesBabu Reddy Janakaloti Narayanareddy, Suvi Vartiainen, Neema Hariri, et al.Proceedings of the National Academy of Sciences of the United States of America|August 28, 2004
Intracellular actin-based transport: how far you go depends on how often you switchJoseph Snider, Francis Lin, Neda Zahedi, et al.Proceedings of the National Academy of Sciences of the United States of America|December 28, 2006
Multiple-motor based transport and its regulation by TauMichael Vershinin, Brian C Carter, David S Razafsky, et al.Pageof 11