Lalioti Vasiliki, Hernandez-Tiedra Sonia, Sandoval Ignacio V
Centro Biología Molecular Severo Ochoa, Cantoblanco, 28049, Madrid, Spain.
Traffic. 2014 Aug;15(8):839-60. doi: 10.1111/tra.12176. Epub 2014 Jun 24.
In the liver, the P-type ATPase and membrane pump ATP7B plays a crucial role in Cu(+) donation to cuproenzymes and in the elimination of excess Cu(+). ATP7B is endowed with a COOH-cytoplasmic (DE)XXXLL-type traffic signal. We find that accessory (Lys -3, Trp -2, Ser -1 and Leu +2) and canonical (D -4, Leu 0 and Leu +1) residues confer the DKWSLLL signal with the versatility required for the Cu(+)-regulated cycling of ATP7B between the trans-Golgi network (TGN) and the plasma membrane (PM). The separate mutation of these residues caused a disruption of the signal, resulting in different ATP7B distribution phenotypes. These phenotypes indicate the key roles of specific residues at separate steps of ATP7B trafficking, including sorting at the TGN, transport from the TGN to the PM and its endocytosis, and recycling to the TGN and PM. The distinct roles of ATP7B in the TGN and PM and the variety of phenotypes caused by the mutation of the canonical and accessory residues of the DKWSLLL signal can explain the separate or joined presentation of Wilson's cuprotoxicosis and the dysfunction of the cuproenzymes that accept Cu(+) at the TGN.
在肝脏中,P型ATP酶及膜泵ATP7B在向铜酶提供Cu(+)以及消除过量Cu(+)方面发挥着关键作用。ATP7B具有一个COOH-细胞质(DE)XXXLL型转运信号。我们发现辅助性(赖氨酸-3、色氨酸-2、丝氨酸-1和亮氨酸+2)和典型性(天冬氨酸-4、亮氨酸0和亮氨酸+1)残基赋予DKWSLLL信号以ATP7B在反式高尔基体网络(TGN)和质膜(PM)之间进行Cu(+)调节循环所需的多功能性。这些残基的单独突变导致信号中断,产生不同的ATP7B分布表型。这些表型表明特定残基在ATP7B运输的不同步骤中发挥关键作用,包括在TGN处的分选、从TGN到PM的运输及其内吞作用,以及循环回到TGN和PM。ATP7B在TGN和PM中的不同作用以及DKWSLLL信号的典型性和辅助性残基突变所导致的多种表型,可以解释威尔逊病铜中毒的单独或联合表现以及在TGN处接受Cu(+)的铜酶功能障碍。