Nghiêm H O, Bettendorff L, Changeux J P
CNRS UA D-1284, Neurobiologie Moléculaire, Institut Pasteur, 75724 Paris Cedex, France.
FASEB J. 2000 Mar;14(3):543-54. doi: 10.1096/fasebj.14.3.543.
43K rapsyn is a peripheral protein specifically associated with the nicotinic acetylcholine receptor (nAChR) present in the postsynaptic membrane of the neuromuscular junction and of the electrocyte, and is essential for its clustering. Here, we demonstrate a novel specific phosphorylation of 43K rapsyn by endogenous protein kinase(s) present in Torpedo electrocyte nAChR-rich membranes and identify thiamine triphosphate (TTP) as the phosphate donor. In the presence of Mg(2+) and [gamma-(32)P]-TTP, 43K rapsyn is specifically phosphorylated with a (32)P-half-maximal incorporation at approximately 5-25 microM TTP. The presence of TTP in the cytosol and of 43K rapsyn at the cytoplasmic face of the postsynaptic membrane, together with TTP-dependent phosphorylation of 43K rapsyn without added exokinases, suggests that TTP-dependent-43K-rapsyn phosphorylation may occur in vivo. In addition, phosphoamino acid and chemical stability analysis suggests that the residues phosphorylated are predominantly histidines. Inhibition of phosphorylation by Zn(2+) suggests a possible control of 43K rapsyn phosphorylation state by its zinc finger domain. Endogenous kinase(s) present in rodent brain membranes can also use [gamma-(32)P]-TTP as a phosphodonor. The use of a phosphodonor (TTP) belonging to the thiamine family but not to the classical (ATP, GTP) purine triphosphate family represents a novel phosphorylation pathway possibly important for synaptic proteins.
43K rapsyn 是一种外周蛋白,与神经肌肉接头和电细胞突触后膜中存在的烟碱型乙酰胆碱受体(nAChR)特异性相关,对其聚集至关重要。在此,我们证明了存在于电鳐电细胞富含 nAChR 的膜中的内源性蛋白激酶对 43K rapsyn 进行的一种新的特异性磷酸化,并确定三磷酸硫胺素(TTP)为磷酸供体。在 Mg(2+) 和 [γ-(32)P]-TTP 存在的情况下,43K rapsyn 被特异性磷酸化,在约 5 - 25 μM TTP 时达到 (32)P 半最大掺入量。细胞溶质中存在 TTP 以及突触后膜胞质面存在 43K rapsyn,再加上在不添加外激酶的情况下 43K rapsyn 的 TTP 依赖性磷酸化,表明 TTP 依赖性 43K rapsyn 磷酸化可能在体内发生。此外,磷酸氨基酸和化学稳定性分析表明,磷酸化的残基主要是组氨酸。Zn(2+) 对磷酸化的抑制表明其锌指结构域可能对 43K rapsyn 的磷酸化状态进行调控。啮齿动物脑膜中存在的内源性激酶也可以使用 [γ-(32)P]-TTP 作为磷酸供体。使用属于硫胺素家族而非经典(ATP、GTP)嘌呤三磷酸家族的磷酸供体(TTP)代表了一种可能对突触蛋白很重要的新磷酸化途径。