Directionality of kinesin motors.
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- Type
- review
- Published
- 2002-12-31
- Cited by
- 9
- References
- 43
- Access
- Open access
- OpenAlex
- https://openalex.org/W2019156315
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13435065
Keywords
Kinesin, Microtubule, Directionality, Molecular motor, Motor protein
References
- Myosin VI is an actin-based motor that moves backwards
- Walking on two heads: the many talents of kinesin
- The case for a common ancestor: kinesin and myosin motor proteins and G proteins
- Myosin-V is a processive actin-based motor
- A structural change in the kinesin motor protein that drives motility
- Reversal in the direction of movement of a molecular motor
- Direction determination in the minus-end-directed kinesin motor ncd
- Distinguishing Inchworm and Hand-Over-Hand Processive Kinesin Movement by Neck Rotation Measurements
- Determinants of molecular motor directionality
- Kinesin hydrolyses one ATP per 8-nm step
- A mutant of the motor protein kinesin that moves in both directions on microtubules
- Dynein arms are oscillating force generators
- The myosin swinging cross-bridge model
- A two-plasmid system for independent genetic manipulation of subunits of homodimeric proteins and selective isolation of chimeric dimers.
- Microscopic evidence for a minus‐end‐directed power stroke in the kinesin motor ncd
- Determinants of kinesin motor polarity.
- Chemomechanical coupling of the forward and backward steps of single kinesin molecules
- Myosin IXb is a single-headed minus-end-directed processive motor
- Directionality and processivity of molecular motors.
- Two conformations in the human kinesin power stroke defined by X-ray crystallography and EPR spectroscopy
Cited by
- Depletion of Kinesin 5B Affects Lysosomal Distribution and Stability and Induces Peri-Nuclear Accumulation of Autophagosomes in Cancer Cells
- Kinesin as an Electrostatic Machine
- Direct Interaction of Baculovirus Capsid Proteins VP39 and EXON0 with Kinesin-1 in Insect Cells Determined by Fluorescence Resonance Energy Transfer-Fluorescence Lifetime Imaging Microscopy
- Microarray analysis of changes in gene expression in a murine model of chronic chagasic cardiomyopathy
- Homotetrameric Form of Cin8p, a Saccharomyces cerevisiae Kinesin-5 Motor, Is Essential for Its in Vivo Function*
- The Kinetic Characterization of the Marginally Processive Motor, Dimeric Eg5/KSP
- Functional characterization of a Kar3/Vik1-like Kinesin-14 heterodimer from the filamentous multinucleate fungus Ashbya gossypii
- Bidirectional motility of kinesin-5 motor proteins: structural determinants, cumulative functions and physiological roles
- Understanding hypertrophic cardiomyopathy and its regulation by myosin drugs
Related papers
- Determinants of molecular motor directionality
- Kinesin motors as molecular machines.
- Cooperative Transport by Populations of Fast and Slow Kinesins Uncovers Novel Family-Dependent Motor Characteristics Important for in vivo Function
- Experimental and Computational Investigations into Cooperative Cargo Transport by Mixtures of Kinesins from Different Families
- S13H2 ATP hydrolysis-coupled structural changes of the walking molecular motor protein kinesin(Common mechanism found in diversity among various biological motors)
- Cooperative Transport by Populations of Fast and Slow Kinesins Uncovers Novel Family-Dependent Motor Characteristics Important for in Vivo Function
- Transport by populations of fast and slow kinesins uncovers novel family-dependent motor characteristics important for in vivo function.
- Structural links to kinesin directionality and movement