{"id":{"repo_id":"wayne-thes","oai_identifier":"oai:digitalcommons.wayne.edu:oa_dissertations-1019"},"canonical_url":"https://search.dev.ndltd.org/etd/wayne-thes/oai:digitalcommons.wayne.edu:oa_dissertations-1019","repository":{"repo_id":"wayne-thes","name":"Wayne State University","base_url":"https://digitalcommons.wayne.edu/do/oai/"},"display":{"title":"Determination Of The Essential Functions Of A Conserved Cyclin, Cyclin Y, In Drosophila","abstract":"<p>The Drosophila gene <i>CG14939</i> encodes a member of a highly conserved family of cyclins, the Y type cyclins, which have not been functionally characterized in any organism. Here I report the generation and phenotypic characterization of a null mutant of <i>CG14939</i>, which we rename <i>Cyclin Y</i> (<i>CycY</i>). I show that the null mutant, <i>CycY<sup>E8</sup></i>, is homozygous lethal with most mutant animals arresting during pupal development. The mutant exhibits delayed larval growth and major developmental defects during metamorphosis. Heat shock-induced expression of <i>CycY</i> at different times during development resulted in variable levels of rescue, the timing of which suggests a key function for zygotic <i>CycY</i> during the transition from third instar larvae to prepupae. <i>CycY</i> also plays an essential role during embryogenesis since zygotic null embryos from null mothers fail to hatch into first instar larvae. Furthermore I show that <i>CycY</i> is required for adult viability, especially in males. I provide evidence that the <i>CycY</i> protein (CycY) interacts with Eip63E, a Cyclin-dependent kinase (Cdk) for which no cyclin partner had previously been identified. Like <i>CycY</i>, the <i>Eip63E</i> gene has essential functions during embryogenesis, larval development, and metamorphosis. My data suggest that CycY/Eip63E form a cyclin/Cdk complex that is essential for several developmental processes.</p> <p> To gain insight into the cellular functions of CycY and to identify signaling pathways to which it belongs, I used RNA interference (RNAi) to knock down <i>CycY</i> expression in specific tissues. I show that <i>CycY</i> is required for wing growth and wing vein development. I also show that <i>CycY</i> genetically interacts with <i>Snr1</i> and <i>Brm</i>, two components of the Brm ATP-dependent chromatin remodeling complex, and that CycY can physically interact with Snr1. Furthermore, I show that downstream targets of the Brm complex are misregulated in <i>CycY</i> mutants. Taken together, these data suggest that <i>CycY</i> may be involved in gene regulation by modulating Brm complex activity.</p>","abstract_html":"&lt;p&gt;The Drosophila gene &lt;i&gt;CG14939&lt;/i&gt; encodes a member of a highly conserved family of cyclins, the Y type cyclins, which have not been functionally characterized in any organism. Here I report the generation and phenotypic characterization of a null mutant of &lt;i&gt;CG14939&lt;/i&gt;, which we rename &lt;i&gt;Cyclin Y&lt;/i&gt; (&lt;i&gt;CycY&lt;/i&gt;). I show that the null mutant, &lt;i&gt;CycY&lt;sup&gt;E8&lt;/sup&gt;&lt;/i&gt;, is homozygous lethal with most mutant animals arresting during pupal development. The mutant exhibits delayed larval growth and major developmental defects during metamorphosis. Heat shock-induced expression of &lt;i&gt;CycY&lt;/i&gt; at different times during development resulted in variable levels of rescue, the timing of which suggests a key function for zygotic &lt;i&gt;CycY&lt;/i&gt; during the transition from third instar larvae to prepupae. &lt;i&gt;CycY&lt;/i&gt; also plays an essential role during embryogenesis since zygotic null embryos from null mothers fail to hatch into first instar larvae. Furthermore I show that &lt;i&gt;CycY&lt;/i&gt; is required for adult viability, especially in males. I provide evidence that the &lt;i&gt;CycY&lt;/i&gt; protein (CycY) interacts with Eip63E, a Cyclin-dependent kinase (Cdk) for which no cyclin partner had previously been identified. Like &lt;i&gt;CycY&lt;/i&gt;, the &lt;i&gt;Eip63E&lt;/i&gt; gene has essential functions during embryogenesis, larval development, and metamorphosis. My data suggest that CycY/Eip63E form a cyclin/Cdk complex that is essential for several developmental processes.&lt;/p&gt; &lt;p&gt; To gain insight into the cellular functions of CycY and to identify signaling pathways to which it belongs, I used RNA interference (RNAi) to knock down &lt;i&gt;CycY&lt;/i&gt; expression in specific tissues. I show that &lt;i&gt;CycY&lt;/i&gt; is required for wing growth and wing vein development. I also show that &lt;i&gt;CycY&lt;/i&gt; genetically interacts with &lt;i&gt;Snr1&lt;/i&gt; and &lt;i&gt;Brm&lt;/i&gt;, two components of the Brm ATP-dependent chromatin remodeling complex, and that CycY can physically interact with Snr1. Furthermore, I show that downstream targets of the Brm complex are misregulated in &lt;i&gt;CycY&lt;/i&gt; mutants. Taken together, these data suggest that &lt;i&gt;CycY&lt;/i&gt; may be involved in gene regulation by modulating Brm complex activity.&lt;/p&gt;","abstract_has_math":false,"creators":["Liu, Dongmei"],"institution":null,"degree_name":"Ph.D.","degree_level":"Open Access Dissertation","degree_discipline":"Molecular Biology and Genetics","degree_department":null,"school":null,"contributors":["Russell L. Finley, Jr"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2010,"date_issued":"2010-01-01T08:00:00Z","date_published":"2010-01-01T08:00:00Z","updated_at":"2026-07-24T05:58:35Z","subjects":["Brm","Cdk14","cyclin","CycY","Eip63E","Snr1","Genetics"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.wayne.edu/oa_dissertations/20","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Russell L. 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Here I report the generation and phenotypic characterization of a null mutant of <i>CG14939</i>, which we rename <i>Cyclin Y</i> (<i>CycY</i>). I show that the null mutant, <i>CycY<sup>E8</sup></i>, is homozygous lethal with most mutant animals arresting during pupal development. The mutant exhibits delayed larval growth and major developmental defects during metamorphosis. Heat shock-induced expression of <i>CycY</i> at different times during development resulted in variable levels of rescue, the timing of which suggests a key function for zygotic <i>CycY</i> during the transition from third instar larvae to prepupae. <i>CycY</i> also plays an essential role during embryogenesis since zygotic null embryos from null mothers fail to hatch into first instar larvae. Furthermore I show that <i>CycY</i> is required for adult viability, especially in males. I provide evidence that the <i>CycY</i> protein (CycY) interacts with Eip63E, a Cyclin-dependent kinase (Cdk) for which no cyclin partner had previously been identified. Like <i>CycY</i>, the <i>Eip63E</i> gene has essential functions during embryogenesis, larval development, and metamorphosis. My data suggest that CycY/Eip63E form a cyclin/Cdk complex that is essential for several developmental processes.</p> <p> To gain insight into the cellular functions of CycY and to identify signaling pathways to which it belongs, I used RNA interference (RNAi) to knock down <i>CycY</i> expression in specific tissues. I show that <i>CycY</i> is required for wing growth and wing vein development. I also show that <i>CycY</i> genetically interacts with <i>Snr1</i> and <i>Brm</i>, two components of the Brm ATP-dependent chromatin remodeling complex, and that CycY can physically interact with Snr1. Furthermore, I show that downstream targets of the Brm complex are misregulated in <i>CycY</i> mutants. Taken together, these data suggest that <i>CycY</i> may be involved in gene regulation by modulating Brm complex activity.</p>"]},{"key":"dc:title","label":"Title","values":["Determination Of The Essential Functions Of A Conserved Cyclin, Cyclin Y, In Drosophila"]}]}],"canonical_facts":{"dc:contributor":["Russell L. Finley, Jr"],"dc:creator":["Liu, Dongmei"],"dc:date.available":["2010-09-23T07:00:00Z"],"dc:description.abstract":["<p>The Drosophila gene <i>CG14939</i> encodes a member of a highly conserved family of cyclins, the Y type cyclins, which have not been functionally characterized in any organism. Here I report the generation and phenotypic characterization of a null mutant of <i>CG14939</i>, which we rename <i>Cyclin Y</i> (<i>CycY</i>). I show that the null mutant, <i>CycY<sup>E8</sup></i>, is homozygous lethal with most mutant animals arresting during pupal development. The mutant exhibits delayed larval growth and major developmental defects during metamorphosis. Heat shock-induced expression of <i>CycY</i> at different times during development resulted in variable levels of rescue, the timing of which suggests a key function for zygotic <i>CycY</i> during the transition from third instar larvae to prepupae. <i>CycY</i> also plays an essential role during embryogenesis since zygotic null embryos from null mothers fail to hatch into first instar larvae. Furthermore I show that <i>CycY</i> is required for adult viability, especially in males. I provide evidence that the <i>CycY</i> protein (CycY) interacts with Eip63E, a Cyclin-dependent kinase (Cdk) for which no cyclin partner had previously been identified. Like <i>CycY</i>, the <i>Eip63E</i> gene has essential functions during embryogenesis, larval development, and metamorphosis. My data suggest that CycY/Eip63E form a cyclin/Cdk complex that is essential for several developmental processes.</p> <p> To gain insight into the cellular functions of CycY and to identify signaling pathways to which it belongs, I used RNA interference (RNAi) to knock down <i>CycY</i> expression in specific tissues. I show that <i>CycY</i> is required for wing growth and wing vein development. I also show that <i>CycY</i> genetically interacts with <i>Snr1</i> and <i>Brm</i>, two components of the Brm ATP-dependent chromatin remodeling complex, and that CycY can physically interact with Snr1. Furthermore, I show that downstream targets of the Brm complex are misregulated in <i>CycY</i> mutants. Taken together, these data suggest that <i>CycY</i> may be involved in gene regulation by modulating Brm complex activity.</p>"],"dc:identifier":["https://digitalcommons.wayne.edu/oa_dissertations/20"],"dc:subject":["Brm","Cdk14","cyclin","CycY","Eip63E","Snr1","Genetics"],"dc:title":["Determination Of The Essential Functions Of A Conserved Cyclin, Cyclin Y, In Drosophila"],"thesis:degree_discipline":["Molecular Biology and Genetics"],"thesis:degree_level":["Open Access Dissertation"],"thesis:degree_name":["Ph.D."]},"updated_at":"2026-07-24T05:58:35Z"}