AbstractConventional kinesin is a dimeric motor protein that transports membranous organelles toward the plus-end of microtubules (MTs). Individual kinesin dimers show steadfast directionality and hundreds of consecutive steps, yet the detailed physical mechanism remains unclear. Here we compute free energies for the entire dimer-MT system for all possible interacting configurations by taking full account of molecular details. Employing merely first principles and several measured binding and barrier energies, the system-level analysis reveals insurmountable energy gaps between configurations, asymmetric ground state caused by mechanically lifted configurational degeneracy, and forbidden transitions ensuring coordination between both motor ...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
Kinesin is a dimeric motor protein that can move along a microtubule for several microns without rel...
AbstractConventional kinesin is a dimeric motor protein that transports membranous organelles toward...
Kinesin-1 is an ATP-driven, processive motor that transports cargo along microtubules in a tightly r...
Kinesin motors are biological motor proteins that evolved for a range of biological transport functi...
AbstractKinesin is a molecular walking machine with two identical motor heads connected to a coiled-...
Kinesin motors are biological motor proteins that evolved for a range of biological transport functi...
Kinesin-1 is a molecular motor that transports cellular cargo along microtubules by completing hundr...
Kinesin is a molecular motor that walks on microtubules by taking 8 nm steps towards the plus end in...
Conventional kinesin (kinesin-1) transports membrane-bounded cargos such as mitochondria and vesicle...
Conventional kinesin (kinesin-1) transports membrane-bounded cargos such as mitochondria and vesicle...
<div><p>Kinesin is a family of molecular motors that move unidirectionally along microtubules (MT) u...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
AbstractThe motor head of kinesin carries out microtubule binding, ATP hydrolysis, and force generat...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
Kinesin is a dimeric motor protein that can move along a microtubule for several microns without rel...
AbstractConventional kinesin is a dimeric motor protein that transports membranous organelles toward...
Kinesin-1 is an ATP-driven, processive motor that transports cargo along microtubules in a tightly r...
Kinesin motors are biological motor proteins that evolved for a range of biological transport functi...
AbstractKinesin is a molecular walking machine with two identical motor heads connected to a coiled-...
Kinesin motors are biological motor proteins that evolved for a range of biological transport functi...
Kinesin-1 is a molecular motor that transports cellular cargo along microtubules by completing hundr...
Kinesin is a molecular motor that walks on microtubules by taking 8 nm steps towards the plus end in...
Conventional kinesin (kinesin-1) transports membrane-bounded cargos such as mitochondria and vesicle...
Conventional kinesin (kinesin-1) transports membrane-bounded cargos such as mitochondria and vesicle...
<div><p>Kinesin is a family of molecular motors that move unidirectionally along microtubules (MT) u...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
AbstractThe motor head of kinesin carries out microtubule binding, ATP hydrolysis, and force generat...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
Kinesin is a dimeric motor protein that can move along a microtubule for several microns without rel...