A Migrating Ciliary Gate Compartmentalizes the Site of Axoneme Assembly in Drosophila Spermatids
A Migrating Ciliary Gate Compartmentalizes the Site of Axoneme Assembly in Drosophila Spermatids
In most cells, the cilium is formed within a compartment separated from the cytoplasm. Entry into the ciliary compartment is regulated by a specialized gate located at the base of the cilium in a region known as the transition zone. The transition zone is closely associated with multiple structures of the ciliary base, including the centriole, axoneme, and ciliary membrane. However, the contribution of these structures to the ciliary gate remains unclear.Here we report that, in Drosophila spermatids, a conserved module of transition zone proteins mutated in Meckel-Gruber syndrome (MKS), including Cep290, Mks1, B9d1, and B9d2, comprise a ciliary gate that continuously migrates away from the centriole to compartmentalize the growing axoneme tip. We show that Cep290 is essential for transition zone composition, compartmentalization of the axoneme tip, and axoneme integrity and find that MKS proteins also delimit a centriole-independent compartment in mouse spermatids.Our findings demonstrate that the ciliary gate can migrate away from the base of the cilium, thereby functioning independently of the centriole and of a static interaction with the axoneme to compartmentalize the site of axoneme assembly.
- University of Toledo United States
- Institute of Evolutionary Physiology and Biochemistry Russian Federation
- University System of Ohio United States
- Russian Academy of Sciences Russian Federation
- Department of Physiological Sciences Russian Federation
Male, Axoneme, Agricultural and Biological Sciences(all), Biochemistry, Genetics and Molecular Biology(all), Spermatids, Mice, Animals, Drosophila Proteins, Drosophila, Cilia, Microtubule-Associated Proteins
Male, Axoneme, Agricultural and Biological Sciences(all), Biochemistry, Genetics and Molecular Biology(all), Spermatids, Mice, Animals, Drosophila Proteins, Drosophila, Cilia, Microtubule-Associated Proteins
29 Research products, page 1 of 3
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