Kif9 is an active kinesin motor required for ciliary beating and proximodistal patterning of motile axonemes

Author:

Konjikusic Mia J.1234ORCID,Lee Chanjae1ORCID,Yue Yang5,Shrestha Bikram D.6ORCID,Nguimtsop Ange M.1,Horani Amjad78ORCID,Brody Steven9ORCID,Prakash Vivek N.610ORCID,Gray Ryan S.234ORCID,Verhey Kristen J.5ORCID,Wallingford John B.1ORCID

Affiliation:

1. University of Texas at Austin 1 Department of Molecular Biosciences , , Austin, TX 78712 , USA

2. Dell Pediatric Research Institute 2 Department of Pediatrics , , 1400 Barbara Jordan Blvd , , Austin, TX 78712 , USA

3. The University of Texas at Austin, Dell Medical School 2 Department of Pediatrics , , 1400 Barbara Jordan Blvd , , Austin, TX 78712 , USA

4. The University of Texas at Austin 3 Department of Nutritional Sciences, 200 W 24th Street , , Austin, TX 78712 , USA

5. University of Michigan Medical School 4 Department of Cell and Developmental Biology , , Ann Arbor, MI 48109 , USA

6. University of Miami 5 Department of Physics , , Coral Gables, FL 33146 , USA

7. Washington University School of Medicine 6 Department of Pediatrics , , St. Louis, MO 63130 , USA

8. Washington University School of Medicine 7 Department of Cell Biology and Physiology , , St. Louis, MO 63110 , USA

9. Washington University School of Medicine 8 Department of Medicine , , St. Louis, MO, 63110 , USA

10. University of Miami 9 Department of Biology and Department of Marine Biology and Ecology , , Coral Gables, FL 33146 , USA

Abstract

ABSTRACT Most motile cilia have a stereotyped structure of nine microtubule outer doublets and a single central pair of microtubules. The central pair of microtubules are surrounded by a set of proteins, termed the central pair apparatus. A specific kinesin, Klp1 projects from the central pair and contributes to ciliary motility in Chlamydomonas. The vertebrate ortholog, Kif9, is required for beating in mouse sperm flagella, but the mechanism of Kif9/Klp1 function remains poorly defined. Here, using Xenopus epidermal multiciliated cells, we show that Kif9 is necessary for ciliary motility and the proper distal localization of not only central pair proteins, but also radial spokes and dynein arms. In addition, single-molecule assays in vitro reveal that Xenopus Kif9 is a long-range processive motor, although it does not mediate long-range movement in ciliary axonemes in vivo. Together, our data suggest that Kif9 is integral for ciliary beating and is necessary for proper axonemal distal end integrity.

Funder

University of Texas at Austin

National Institute of Arthritis and Musculoskeletal and Skin Diseases

National Institutes of Health

Publisher

The Company of Biologists

Subject

Cell Biology

Reference47 articles.

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2. Control of vertebrate intraflagellar transport by the planar cell polarity effector Fuz;Brooks;J. Cell Biol.,2012

3. Multiciliated cells;Brooks;Curr. Biol.,2014

4. Chapter 7 - In vivo investigation of cilia structure and function using Xenopus;Brooks,2015

5. Regulation of a heterodimeric kinesin-2 through an unprocessive motor domain that is turned processive by its partner;Brunnbauer;Proc. Natl. Acad. Sci. USA,2010

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