Boylan K, Serr M, Hays T
Department of Genetics, Cell Biology, and Development, University of Minnesota, St. Paul, Minnesota 55108, USA.
Mol Biol Cell. 2000 Nov;11(11):3791-803. doi: 10.1091/mbc.11.11.3791.
The microtubule motor cytoplasmic dynein performs multiple cellular functions; however, the regulation and targeting of the motor to different cargoes is not well understood. A biochemical interaction between the dynein intermediate chain subunit and the p150-Glued component of the dynein regulatory complex, dynactin, has supported the hypothesis that the intermediate chain is a key modulator of dynein attachment to cellular cargoes. In this report, we identify multiple intermediate chain polypeptides that cosediment with the 19S dynein complex and two differentially expressed transcripts derived from the single cytoplasmic dynein intermediate chain (Cdic) gene that differ in the 3' untranslated region sequence. These results support previous observations of multiple Cdic gene products that may contribute to the specialization of dynein function. Most significantly, we provide genetic evidence that the interaction between the dynein intermediate chain and p150-Glued is functionally relevant. We use a genomic Cdic transgene to show that extra copies of the dynein intermediate chain gene act to suppress the rough eye phenotype of the mutant Glued(1), a mutation in the p150-Glued subunit of dynactin. Furthermore, we show that the interaction between the dynein intermediate chain and p150-Glued is dependent on the dosage of the Cdic gene. This result suggests that the dynein intermediate chain may be a limiting component in the assembly of the dynein complex and that the regulation of the interaction between the dynein intermediate chain and dynactin is critical for dynein function.
微管马达胞质动力蛋白执行多种细胞功能;然而,该马达蛋白对不同货物的调控及靶向作用尚未得到充分理解。动力蛋白中间链亚基与动力蛋白调节复合体动力激活蛋白的p150 - Glued组分之间的生化相互作用支持了这样一种假说,即中间链是动力蛋白附着于细胞货物的关键调节因子。在本报告中,我们鉴定出多种与19S动力蛋白复合体共沉降的中间链多肽,以及源自单个胞质动力蛋白中间链(Cdic)基因的两个差异表达转录本,它们在3'非翻译区序列上有所不同。这些结果支持了先前关于多种Cdic基因产物的观察结果,这些产物可能有助于动力蛋白功能的特化。最重要的是,我们提供了遗传学证据,证明动力蛋白中间链与p150 - Glued之间的相互作用在功能上是相关的。我们使用一个基因组Cdic转基因来表明,动力蛋白中间链基因的额外拷贝可抑制突变体Glued(1)的粗糙眼表型,Glued(1)是动力激活蛋白的p150 - Glued亚基中的一个突变。此外,我们表明动力蛋白中间链与p150 - Glued之间的相互作用依赖于Cdic基因的剂量。这一结果表明,动力蛋白中间链可能是动力蛋白复合体组装中的一个限制成分,并且动力蛋白中间链与动力激活蛋白之间相互作用的调控对动力蛋白功能至关重要。