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Precise positioning of myosin VI on endocytic vesicles in vivo
Authors:Altman David  Goswami Debanjan  Hasson Tama  Spudich James A  Mayor Satyajit
Affiliation:1 Department of Biochemistry, Stanford University Medical Center, Stanford, California, United States of America, 2 National Centre for Biological Sciences, UAS-GKVK Campus, Bangalore, India, 3 Division of Biological Sciences, University of California San Diego, La Jolla, California, United States of America
Abstract:Myosin VI has been studied in both a monomeric and a dimeric form in vitro. Because the functional characteristics of the motor are dramatically different for these two forms, it is important to understand whether myosin VI heavy chains are brought together on endocytic vesicles. We have used fluorescence anisotropy measurements to detect fluorescence resonance energy transfer between identical fluorophores (homoFRET) resulting from myosin VI heavy chains being brought into close proximity. We observed that, when associated with clathrin-mediated endocytic vesicles, myosin VI heavy chains are precisely positioned to bring their tail domains in close proximity. Our data show that on endocytic vesicles, myosin VI heavy chains are brought together in an orientation that previous in vitro studies have shown causes dimerization of the motor. Our results are therefore consistent with vesicle-associated myosin VI existing as a processive dimer, capable of its known trafficking function.
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