We present a simple analytical solution for a kinetic model of motor molecule function with multiple arms. This model has a rate of motion proportional to the probability that all arms in a complex are detached from the cytoskeleton and, therefore, we refer to it as obligate cooperativity. The model has the form: v = Vmax/(1 + q/S)n, where Vmax is the maximum velocity, the product nq is the effective Michaelis constant at high [ATP], and n is the number of arms. Values of n = 2 and n = 1 give good fits to the heavy meromyosin and myosin S1 sliding velocity data, respectively, consistent with the number of active sites. Despite the complexity of the eukaryotic axoneme, beat frequency data from Chlamydomonas wild-type and oda mutants are also...
Intracellular transport is a fundamental biological process during which cellular materials are driv...
ABSTRACT: Intracellular transport is supported by enzymes called motor proteins that are often coupl...
The kinesin, myosin and F1-ATPase molecular motors are multi-domain proteins with multiple catalysis...
We present a simple analytical solution for a kinetic model of motor molecule function with multiple...
The kinetics of molecular motors are usually assessed for single or a few connected motors, or group...
. -- We discuss the force-velocity relations obtained in a two-state crossbridge model for molecular...
AbstractSubcellular cargos are often transported by teams of processive molecular motors, which rais...
Kinesin, myosin and F1-ATPase are multi-domain molecular motors with multiple catalytic subunits. Th...
The mechanisms of molecular motors transport are important for understanding multiple biological pro...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
In cells, cytoskeletal filament networks are responsible for cell movement, growth, and division. Fi...
Myosin II is a biomolecular machine that is responsible for muscle contraction. Myosin II motors act...
Motor proteins are microscopic biological machines that convert chemical energy into mechanical moti...
We present Monte Carlo simulations for a molecular motor system found in virtually all eukaryotic ce...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
Intracellular transport is a fundamental biological process during which cellular materials are driv...
ABSTRACT: Intracellular transport is supported by enzymes called motor proteins that are often coupl...
The kinesin, myosin and F1-ATPase molecular motors are multi-domain proteins with multiple catalysis...
We present a simple analytical solution for a kinetic model of motor molecule function with multiple...
The kinetics of molecular motors are usually assessed for single or a few connected motors, or group...
. -- We discuss the force-velocity relations obtained in a two-state crossbridge model for molecular...
AbstractSubcellular cargos are often transported by teams of processive molecular motors, which rais...
Kinesin, myosin and F1-ATPase are multi-domain molecular motors with multiple catalytic subunits. Th...
The mechanisms of molecular motors transport are important for understanding multiple biological pro...
Molecular motors play important roles within a biological cell, performing functions such as intrace...
In cells, cytoskeletal filament networks are responsible for cell movement, growth, and division. Fi...
Myosin II is a biomolecular machine that is responsible for muscle contraction. Myosin II motors act...
Motor proteins are microscopic biological machines that convert chemical energy into mechanical moti...
We present Monte Carlo simulations for a molecular motor system found in virtually all eukaryotic ce...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
Intracellular transport is a fundamental biological process during which cellular materials are driv...
ABSTRACT: Intracellular transport is supported by enzymes called motor proteins that are often coupl...
The kinesin, myosin and F1-ATPase molecular motors are multi-domain proteins with multiple catalysis...