Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA.
J Biol Chem. 2012 Jun 1;287(23):19487-500. doi: 10.1074/jbc.M112.343814. Epub 2012 Apr 11.
Subunit a of the yeast vacuolar-type, proton-translocating ATPase enzyme complex (V-ATPase) is responsible for both proton translocation and subcellular localization of this highly conserved molecular machine. Inclusion of the Vph1p isoform causes the V-ATPase complex to traffic to the vacuolar membrane, whereas incorporation of Stv1p causes continued cycling between the trans-Golgi and endosome. We previously demonstrated that this targeting information is contained within the cytosolic, N-terminal portion of V-ATPase subunit a (Stv1p). To identify residues responsible for sorting of the Golgi isoform of the V-ATPase, a random mutagenesis was performed on the N terminus of Stv1p. Subsequent characterization of mutant alleles led to the identification of a short peptide sequence, W(83)KY, that is necessary for proper Stv1p localization. Based on three-dimensional homology modeling to the Meiothermus ruber subunit I, we propose a structural model of the intact Stv1p-containing V-ATPase demonstrating the accessibility of the W(83)KY sequence to retrograde sorting machinery. Finally, we characterized the sorting signal within the context of a reconstructed Stv1p ancestor (Anc.Stv1). This evolutionary intermediate includes an endogenous W(83)KY sorting motif and is sufficient to compete with sorting of the native yeast Stv1p V-ATPase isoform. These data define a novel sorting signal that is both necessary and sufficient for trafficking of the V-ATPase within the Golgi/endosomal network.
酵母液泡型质子转运 ATP 酶酶复合物(V-ATPase)的亚基 a 负责质子转运和这种高度保守的分子机器的亚细胞定位。Vph1p 同工型的包含导致 V-ATPase 复合物向液泡膜运输,而 Stv1p 的掺入导致其在高尔基体和内体之间继续循环。我们之前证明,这种靶向信息包含在 V-ATPase 亚基 a 的细胞质、N 端部分(Stv1p)中。为了鉴定负责 V-ATPase 高尔基体同工型分选的残基,我们对 Stv1p 的 N 端进行了随机诱变。随后对突变等位基因的特征分析导致鉴定出一个短肽序列 W(83)KY,这对于正确的 Stv1p 定位是必要的。基于对 Meiothermus ruber 亚基 I 的三维同源建模,我们提出了一个包含完整 Stv1p 的 V-ATPase 的结构模型,证明了 W(83)KY 序列对逆行分选机制的可及性。最后,我们在重建的 Stv1p 祖先(Anc.Stv1)的背景下对分选信号进行了表征。这种进化中间体包括一个内源性的 W(83)KY 分选基序,足以与天然酵母 Stv1p V-ATPase 同工型的分选竞争。这些数据定义了一个新的分选信号,它对于 V-ATPase 在高尔基体/内体网络中的运输是必要和充分的。