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Tubulin-binding cofactor E-like (TBCEL), the protein product of the mulet gene, is required in the germline for the regulation of inter-flagellar microtubule dynamics during spermatid individualization.
Fabrizio, James J; Rollins, Janet; Bazinet, Christopher W; Wegener, Stephanie; Koziy, Iryna; Daniel, Rachel; Lombardo, Vincent; Pryce, Dwaine; Bharrat, Kavita; Innabi, Elissa; Villanobos, Marielle; Mendoza, Gabriela; Ferrara, Elisa; Rodway, Stephanie; Vicioso, Matthew; Siracusa, Victoria; Dailey, Erin; Pronovost, Justin; Innabi, Simon; Patel, Vrutant; DeSouza, Nicole; Quaranto, Danielle; Niknejad, Amir.
Afiliação
  • Fabrizio JJ; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA james.fabrizio@mountsaintvincent.edu.
  • Rollins J; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Bazinet CW; Dept of Biological Sciences St John's University, New York City, NY 11439, USA.
  • Wegener S; Leibniz Institute for Neurobiology Magdeburg, Department Genetics of Learning and Memory, 39118 Magdeburg, Germany.
  • Koziy I; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Daniel R; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Lombardo V; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Pryce D; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Bharrat K; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Innabi E; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Villanobos M; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Mendoza G; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Ferrara E; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Rodway S; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Vicioso M; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Siracusa V; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Dailey E; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Pronovost J; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Innabi S; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Patel V; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • DeSouza N; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Quaranto D; Division of Natural Sciences, College of Mt St Vincent, Bronx, NY 10471, USA.
  • Niknejad A; Department of Mathematics, College of Mt St Vincent, Bronx, NY 10471, USA.
Biol Open ; 9(2)2020 02 26.
Article em En | MEDLINE | ID: mdl-32033965
ABSTRACT
Individual sperm cells are resolved from a syncytium during late step of spermiogenesis known as individualization, which is accomplished by an Individualization Complex (IC) composed of 64 investment cones. mulet encodes Tubulin-binding cofactor E-like (TBCEL), suggesting a role for microtubule dynamics in individualization. Indeed, a population of ∼100 cytoplasmic microtubules fails to disappear in mulet mutant testes during spermatogenesis. This persistence, detected using epi-fluorescence and electron microscopy, suggests that removal of these microtubules by TBCEL is a prerequisite for individualization. Immunofluorescence reveals TBCEL expression in elongated spermatid cysts. In addition, testes from mulet mutant males were rescued to wild type using tubulin-Gal4 to drive TBCEL expression, indicating that the mutant phenotype is caused by the lack of TBCEL. Finally, RNAi driven by bam-GAL4 successfully phenocopied mulet, confirming that mulet is required in the germline for individualization. We propose a model in which the cytoplasmic microtubules serve as alternate tracks for investment cones in mulet mutant testes.This article has an associated First Person interview with the first author of the paper.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Espermátides / Espermatogênese / Chaperonas Moleculares / Proteínas de Drosophila / Células Germinativas Limite: Animals Idioma: En Revista: Biol Open Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Espermátides / Espermatogênese / Chaperonas Moleculares / Proteínas de Drosophila / Células Germinativas Limite: Animals Idioma: En Revista: Biol Open Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Estados Unidos