Department of Biology, Indiana University, Bloomington, Indiana 47405.
Department of Biology, Indiana University, Bloomington, Indiana 47405
Genetics. 2015 Oct;201(2):685-706. doi: 10.1534/genetics.115.181842.
The formation of the pericentriolar matrix (PCM) and a fully functional centrosome in syncytial Drosophila melanogaster embryos requires the rapid transport of Cnn during initiation of the centrosome replication cycle. We show a Cnn and Polo kinase interaction is apparently required during embryogenesis and involves the exon 1A-initiating coding exon, suggesting a subset of Cnn splice variants is regulated by Polo kinase. During PCM formation exon 1A Cnn-Long Form proteins likely bind Polo kinase before phosphorylation by Polo for Cnn transport to the centrosome. Loss of either of these interactions in a portion of the total Cnn protein pool is sufficient to remove native Cnn from the pool, thereby altering the normal localization dynamics of Cnn to the PCM. Additionally, Cnn-Short Form proteins are required for polar body formation, a process known to require Polo kinase after the completion of meiosis. Exon 1A Cnn-LF and Cnn-SF proteins, in conjunction with Polo kinase, are required at the completion of meiosis and for the formation of functional centrosomes during early embryogenesis.
合胞体果蝇胚胎中中心粒周围基质(PCM)的形成和功能齐全的中心体需要在中心体复制周期开始时快速运输 Cnn。我们表明,Cnn 和 Polo 激酶之间的相互作用显然在胚胎发生过程中是必需的,并且涉及外显子 1A-起始编码外显子,表明 Polo 激酶调节 Cnn 的一部分剪接变体。在 PCM 形成过程中,外显子 1A Cnn-长形式蛋白可能在被 Polo 激酶磷酸化之前与 Polo 激酶结合,以便将 Cnn 运输到中心体。在总 Cnn 蛋白池中丢失这些相互作用中的任一部分足以将天然 Cnn 从池中去除,从而改变 Cnn 到 PCM 的正常定位动力学。此外,Cnn-短形式蛋白对于极体形成是必需的,已知该过程在减数分裂完成后需要 Polo 激酶。外显子 1A Cnn-LF 和 Cnn-SF 蛋白与 Polo 激酶一起,在减数分裂完成时以及在早期胚胎发生过程中形成功能中心体时是必需的。