Institute of Anatomy and Cell Biology, University of Würzburg, 97070 Würzburg, Germany.
Traffic. 2009 Nov;10(11):1599-618. doi: 10.1111/j.1600-0854.2009.00982.x. Epub 2009 Sep 2.
The gene product of RSC1A1, RS1, participates in the regulation of the Na(+)-D-glucose cotransporter SGLT1. RS1 inhibits release of SGLT1 from the trans Golgi network. In subconfluent LLC-PK(1) cells, RS1 migrates into the nucleus and modulates transcription of SGLT1, whereas most confluent cells do not contain RS1 in the nuclei. We showed that confluence-dependent nuclear location of RS1 is because of different phases of the cell cycle and identified a RS1 nuclear shuttling domain (RNS) with an associated protein kinase C (PKC) phosphorylation site (RNS-PKC) that mediates cell cycle-dependent nuclear location. RNS-PKC contains a novel non-conventional nuclear localization signal interacting with importin beta1, a nuclear export signal mediating export via protein CRM1 and a Ca(2+)-dependent calmodulin binding site. PKC and calmodulin compete for binding to RNS-PKC. Mutagenesis experiments and analyses of the phosphorylation status suggest the following sequences of events. Subconfluent cells without and with synchronization to the G2/M phase contain non-phosphorylated RNS-PKC that mediates nuclear import of RS1 but not its export. During confluence or synchronization of subconfluent cells to the G2/M phase, phosphorylation of RNS-PKC mediates rapid nuclear export of RS1.
RSC1A1 基因产物 RS1 参与调控 Na(+)-D-葡萄糖协同转运蛋白 SGLT1。RS1 抑制 SGLT1 从反式高尔基体网络中的释放。在未融合的 LLC-PK(1)细胞中,RS1 迁移到细胞核并调节 SGLT1 的转录,而大多数融合细胞的细胞核中不含 RS1。我们表明,RS1 依赖于细胞融合的核定位是由于细胞周期的不同阶段,并确定了一个 RS1 核穿梭结构域(RNS),其具有与蛋白激酶 C(PKC)磷酸化位点(RNS-PKC)相关的核穿梭结构域,介导细胞周期依赖性核定位。RNS-PKC 包含一个新的非传统核定位信号,与输入蛋白 importin beta1 相互作用,一个核输出信号通过蛋白 CRM1 介导输出,以及一个 Ca(2+)-依赖性钙调蛋白结合位点。PKC 和钙调蛋白竞争与 RNS-PKC 的结合。突变实验和磷酸化状态分析表明以下事件序列。未融合且未同步到 G2/M 期的细胞包含非磷酸化的 RNS-PKC,介导 RS1 的核输入,但不介导其输出。在融合或同步到 G2/M 期的亚融合细胞中,RNS-PKC 的磷酸化介导 RS1 的快速核输出。