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Current Opinion in Cell Biology|February 19, 2000
Functions of unconventional myosinsX Wu, G Jung, J A HammerThe Journal of Cell Biology|April 1, 1996
Dictyostelium mutants lacking multiple classic myosin I isoforms reveal combinations of shared and distinct functionsG Jung, X Wu, J A HammerThe Journal of Cell Biology|June 27, 2001
The Dictyostelium CARMIL protein links capping protein and the Arp2/3 complex to type I myosins through their SH3 domainsG Jung, K Remmert, X Wu, et al.Pigment Cell Research|August 22, 2000
Making sense of melanosome dynamics in mouse melanocytesX Wu, J A HammerFEBS Letters|April 4, 1994
The actin binding site in the tail domain of Dictyostelium myosin IC (myoC) resides within the glycine- and proline-rich sequence (tail homology region 2)G Jung, J A HammerThe Journal of Cell Biology|June 1, 1990
Generation and characterization of Dictyostelium cells deficient in a myosin I heavy chain isoformG Jung, J A HammerJournal of Cell Science. Supplement|January 1, 1991
Molecular cloning of protozoan myosin I heavy chain genesJ A Hammer, G JungThe Journal of Biological Chemistry|March 22, 1996
The sequence of the dictyostelium myo J heavy chain gene predicts a novel, dimeric, unconventional myosin with a heavy chain molecular mass of 258 kDaJ A Hammer, G JungJournal of Muscle Research and Cell Motility|November 14, 1997
The predominant defect in dilute melanocytes is in melanosome distribution and not cell shape, supporting a role for myosin V in melanosome transportQ Wei, X Wu, J A HammerCell Motility and the Cytoskeleton|July 25, 1998
Myosin Va associates with microtubule-rich domains in both interphase and dividing cellsX Wu, B Kocher, Q Wei, et al.Pageof 461