Nili U, de Wit H, Gulyas-Kovacs A, Toonen R F, Sørensen J B, Verhage M, Ashery U
Department of Neurobiochemistry, Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel.
Neuroscience. 2006 Dec 1;143(2):487-500. doi: 10.1016/j.neuroscience.2006.08.014. Epub 2006 Sep 25.
Activation of protein kinase C (PKC) after robust stimulation is necessary for vesicle pool replenishment in secretory cells. Here we studied the contribution of a prominent downstream PKC target, Munc18-1, to this process in bovine chromaffin cells. In these cells, both activation of endogenous PKC and overexpressing of Munc18-1 promote vesicle pool replenishment after an extensive stimulation. In order to study the physiological relevance of PKC-dependent Munc18-1 phosphorylation, we generated two Munc18-1 phospho-mutants; one that mimics a constitutively PKC-phosphorylated Munc18-1 (i.e. a phosphomimetic mutant; Munc18-1(S313D)) and a second that cannot be PKC-phosphorylated (Munc18-1(3A)). Overexpression of Munc18-1(3A) caused a significant decrease in vesicle pool replenishment following a depleting stimulation, while Munc18-1(S313D) caused a significant increase in vesicle pool replenishment. These findings suggested that the phosphorylation of Munc18-1 by PKC potentiates vesicle pool replenishment. This hypothesis was further strengthened by the finding that overexpression of wild type Munc18-1 in the presence of a PKC inhibitor caused a significant reduction in vesicle pool replenishment, similar to that observed with Munc18-1(3A). Moreover, overexpression of Munc18-1(S313D) in the presence of the PKC inhibitor partly alleviated this attenuation, elucidating Munc18-1's unique contribution to vesicle pool replenishment. Finally, we demonstrate that Munc18-1 promotes vesicle docking in a phosphorylation-independent manner. This is deduced from the findings that both the wild type and the two Munc18-1 phospho-mutants enhanced docking to the same extent in bovine chromaffin cells. We conclude that Munc18-1 facilitates docking in a PKC phosphorylation-independent manner, and that its phosphorylation by PKC potentiates vesicle pool replenishment following a depleting stimulation, at a post-docking stage.
在强烈刺激后,蛋白激酶C(PKC)的激活对于分泌细胞中囊泡池的补充是必要的。在此,我们研究了一个重要的PKC下游靶点Munc18-1在牛嗜铬细胞这一过程中的作用。在这些细胞中,内源性PKC的激活和Munc18-1的过表达均能在广泛刺激后促进囊泡池的补充。为了研究PKC依赖性Munc18-1磷酸化的生理相关性,我们构建了两个Munc18-1磷酸化突变体;一个模拟组成型PKC磷酸化的Munc18-1(即磷酸模拟突变体;Munc18-1(S313D)),另一个不能被PKC磷酸化(Munc18-1(3A))。Munc18-1(3A)的过表达导致在耗尽性刺激后囊泡池补充显著减少,而Munc18-1(S313D)则导致囊泡池补充显著增加。这些发现表明PKC介导的Munc18-1磷酸化增强了囊泡池的补充。在PKC抑制剂存在的情况下野生型Munc18-1的过表达导致囊泡池补充显著减少,这一发现与Munc18-1(3A)的情况相似,进一步支持了这一假设。此外,在PKC抑制剂存在的情况下Munc18-1(S313D)的过表达部分缓解了这种减弱,阐明了Munc18-1对囊泡池补充的独特作用。最后,我们证明Munc18-1以磷酸化非依赖性方式促进囊泡对接。这是从野生型和两个Munc18-1磷酸化突变体在牛嗜铬细胞中促进对接程度相同这一发现推断出来的。我们得出结论,Munc18-1以PKC磷酸化非依赖性方式促进对接,并且其在耗尽性刺激后的对接后阶段被PKC磷酸化增强了囊泡池的补充。