Title of article :
Biased Brownian motion mechanism for processivity and directionality of single-headed myosin-VI
Author/Authors :
Mitsuhiro Iwaki، نويسنده , , Atsuko Hikikoshi Iwane، نويسنده , , Mitsuo Ikebe، نويسنده , , Toshio Yanagida، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
Conventional form to function as a vesicle transporter is not a ‘single molecule’ but a coordinated ‘two molecules’. The coordinated two molecules make it complicated to reveal its mechanism. To overcome the difficulty, we adopted a single-headed myosin-VI as a model protein. Myosin-VI is an intracellular vesicle and organelle transporter that moves along actin filaments in a direction opposite to most other known myosin classes. The myosin-VI was expected to form a dimer to move processively along actin filaments with a hand-over-hand mechanism like other myosin organelle transporters. However, wild-type myosin-VI was demonstrated to be monomer and single-headed, casting doubt on its processivity. Using single molecule techniques, we show that green fluorescent protein (GFP)-fused single-headed myosin-VI does not move processively. However, when coupled to a 200 nm polystyrene bead (comparable to an intracellular vesicle in size) at a ratio of one head per bead, single-headed myosin-VI moves processively with large (40 nm) steps. Furthermore, we found that a single-headed myosin-VI–bead complex moved more processively in a high-viscous solution (40-fold higher than water) similar to cellular environment. Because diffusion of the bead is 60-fold slower than myosin-VI heads alone in water, we propose a model in which the bead acts as a diffusional anchor for the myosin-VI, enhancing the headʹs rebinding following detachment and supporting processive movement of the bead–monomer complex. This investigation will help us understand how molecular motors utilize Brownian motion in cells.
Keywords :
Biased Brownian motion , Molecular motor , vesicle transport , Single molecule , Unconventional myosin
Journal title :
BioSystems
Journal title :
BioSystems