Distinct Intracellular Vesicle Transport Mechanisms Are Selectively Modified by Spastin and Spastin Mutations

作者:Fueerst Julia C; Henkel Andreas W*; Stroebel Armin; Welzel Oliver; Groemer Teja W; Kornhuber Johannes; Boensch Dominikus
来源:Journal of Cellular Physiology, 2011, 226(2): 362-368.
DOI:10.1002/jcp.22341

摘要

Spastin is a microtubule severing ATPase that regulates intracellular and axonal transport of vesicles. Intracellular vesicle trafficking was analyzed in differentiated SH-SY5Y-neuroblastoma cells, transfected with spastin wild-type and three spastin mutations (Delta N, K388R, S44L) to investigate spastin-mediated effects on the velocity of vesicles, stained with LysoTracker Red(II). The vesicle velocity varied considerably between mutations and detailed analysis revealed up to five distinct velocity classes. Microtubule severing by overexpressed wild-type spastin caused reduced vesicle velocity. S44L and Delta N mutations, which were functionally impaired, showed similar velocities as control cells. K388R-transfected cells exhibited an intermediate velocity profile. The results support the idea that spastin mutations not only alter axonal transport, but in addition regulate intracellular trafficking in the cell soma as well. J. Cell. Physiol. 226: 362-368, 2011.

  • 出版日期2011-2