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Sequence and Properties of Cagein,a Coiled-Coil Scaffold Protein Linking Basal Bodies in the Polykinetids of the Ciliate Euplotes aediculatus
Authors:John A Kloetzel  Anne Aubusson-Fleury  Maurice D Butler  Deben Banerjee  Matteo Mozzicafreddo
Institution:1. Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, Maryland, 21250 USA;2. Biogenese et Fonction des Structures Centriolaires, I2BC, Université Paris Saclay, Gif sur Yvette, 91190 France;3. New York Blood Center, New York, New York, 10021 USA;4. Scuola di Bioscienze e Medicina Veterinaria, Università di Camerino, Camerino, Macerata, 62032 Italy
Abstract:In the hypotrich ciliate Euplotes, many individual basal bodies are grouped together in tightly packed clusters, forming ventral polykinetids. These groups of basal bodies (which produce compound ciliary organelles such as cirri and oral membranelles) are cross-linked into ordered arrays by scaffold structures known as “basal-body cages.” The major protein comprising Euplotes cages has been previously identified and termed “cagein.” Screening a Eaediculatus cDNA expression library with anti-cagein antisera identified a DNA insert containing most of a putative cagein gene; standard PCR techniques were used to complete the sequence. Probes designed from this gene identified a macronuclear “nanochromosome” of ca. 1.5 kb in Southern blots against whole-cell DNA. The protein derived from this sequence (463 residues) is predicted to be hydrophilic and highly charged; however, the native cage structures are highly resistant to salt/detergent extraction. This insolubility could be explained by the coiled-coil regions predicted to extend over much of the length of the derived cagein polypeptide. One frameshift sequence is found within the gene, as well as a short intron. BLAST searches find many ciliates with evident homologues to cagein within their derived genomic sequences.
Keywords:Cilia  ciliate introns  cortical morphogenesis  cytoskeleton  euplotid  frameshift  hypotrich  intermediate filaments  kinetosome  protist
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