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RANBP2 is an allosteric activator of the conventional kinesin‐1 motor protein,KIF5B,in a minimal cell‐free system
Authors:Kyoung‐in Cho  Haiqing Yi  Ria Desai  Arthur R Hand  Arthur L Haas  Paulo A Ferreira
Institution:1. Department of Ophthalmology, Duke University Medical Center, DUEC 3802, Erwin Road, Durham, North Carolina, 27710 USA;2. Department of Craniofacial Sciences and;3. Department of Cell Biology, University of Connecticut, Farmington, Connecticut, 06030 USA;4. Department of Biochemistry and Molecular Biology, Louisiana State University Health Science Center, New Orleans, Louisiana, 70112 USA;5. Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina, 27710 USA
Abstract:The association of cargoes to kinesins is thought to promote kinesin activation, yet the validation of such a model with native cargoes is lacking because none is known to activate kinesins directly in an in vitro system of purified components. The RAN‐binding protein 2 (RANBP2), through its kinesin‐binding domain (KBD), associates in vivo with kinesin‐1, KIF5B/KIF5C. Here, we show that KBD and its flanking domains, RAN GTPase‐binding domains 2 and 3 (RBD2/RBD3), activate the ATPase activity of KIF5B approximately 30‐fold in the presence of microtubules and ATP. The activation kinetics of KIF5B by RANBP2 is biphasic and highly cooperative. Deletion of one of its RBDs lowers the activation of KIF5B threefold and abolishes cooperativity. Remarkably, RBD2–KBD–RBD3 induces unfolding and modest activation of KIF5B in the absence of microtubules. Hence, RANBP2 is the first native and positive allosteric activator known to jump‐start and boost directly the activity of a kinesin.
Keywords:ATPase  kinetics  mechanotransduction  kinesin  RAN‐binding protein 2
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