Dynein heavy chain isoforms and axonemal motility |
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Authors: | Asai D J Brokaw C J |
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Institution: | Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, USA. |
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Abstract: | The translocation of dynein along microtubules is the basis for a wide variety of essential cellular movements. Dynein was first discovered in the ciliary axoneme, where it causes the directed sliding between outer doublet microtubules that underlies ciliary bending. The initiation and propagation of ciliary bends are produced by a precisely located array of different dyneins containing eight or more different dynein heavy chain isoforms. The detailed clarification of the structural and functional diversity of axonemal dynein heavy chains will not only provide the key to understanding how cilia function, but also give insights applicable to the study of non-axonemal microtubule motors. |
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