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PMID: 24953741 Published · ppublish English

Integrated regulation of motor-driven organelle transport by scaffolding proteins.

Trends in cell biology ·Vol. 24 ·No. 10 ·2015-06-22

Fu Meng-meng, Holzbaur Erika L F

Abstract

Intracellular trafficking pathways, including endocytosis, autophagy, and secretion, rely on directed organelle transport driven by the opposing microtubule motor proteins kinesin and dynein. Precise spatial and temporal targeting of vesicles and organelles requires the integrated regulation of these opposing motors, which are often bound simultaneously to the same cargo. Recent progress demonstrates that organelle-associated scaffolding proteins, including Milton/TRAKs (trafficking kinesin-binding protein), JIP1, JIP3 (JNK-interacting proteins), huntingtin, and Hook1, interact with molecular motors to coordinate activity and sustain unidirectional transport. Scaffolding proteins also bind to upstream regulatory proteins, including kinases and GTPases, to modulate transport in the cell. This integration of regulatory control with motor activity allows for cargo-specific changes in the transport or targeting of organelles in response to cues from the complex cellular environment.

Keywords
axonal transport dynactin dynein intracellular trafficking kinesin organelle transport
Article Info
Journal
Trends in cell biology
Abbr.
Trends Cell Biol
Published
2015-06-22
Indexed
2014-09-27
Updated
2016-11-25
Language
English
Country/Region
England
NLM ID
9200566
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