Tague B W, Dickinson C D, Chrispeels M J
Department of Biology, University of California, San Diego, La Jolla 92093-0116.
Plant Cell. 1990 Jun;2(6):533-46. doi: 10.1105/tpc.2.6.533.
Phytohemagglutinin (PHA), the seed lectin of the common bean, accumulates in protein storage vacuoles of storage parenchyma cells in cotyledons. When expressed in yeast, PHA is efficiently targeted to the yeast vacuole [Tague and Chrispeels (1987). J. Cell Biol. 105, 1971-1979]. To identify vacuolar sorting information in PHA, a series of 3' deletions of the PHA gene were fused in-frame to a truncated yeast invertase gene. An amino-terminal portion of PHA composed of a 20-residue signal sequence and 43 residues of the mature protein efficiently targeted invertase to the yeast vacuole. Internal deletions in a short PHA-invertase fusion showed that targeting information exists between residues 14 and 23 of mature PHA. Based on examinations of three-dimensional structures of related lectins, only a portion of these residues would be available on the surface of PHA for interaction with a putative receptor. Amino acid replacements at these positions in a PHA-invertase hybrid caused secretion of the invertase. The results indicate the presence of a vacuolar targeting domain in PHA that is centered at position 19 of the mature protein. This sequence of PHA also shows sequence identity to a vacuolar sorting domain characterized in yeast carboxypeptidase Y. Single amino acid alterations in a short PHA-invertase hybrid protein that caused the highest levels of secretion introduced a glycosylation site at position 21 of PHA. This observation suggests that glycan addition may interfere with recognition of a sorting determinant. These same amino acid changes did not dramatically increase secretion in a long PHA-invertase fusion or in PHA itself. Thus, a second domain of PHA may function in concert with the first one to bring about correct targeting of PHA.
植物血凝素(PHA)是菜豆的种子凝集素,积累在子叶中贮藏薄壁细胞的蛋白贮藏液泡中。当在酵母中表达时,PHA能有效地靶向酵母液泡[Tague和Chrispeels(1987年)。《细胞生物学杂志》105卷,1971 - 1979页]。为了鉴定PHA中的液泡分选信息,将PHA基因的一系列3'端缺失片段与截短的酵母转化酶基因读框融合。由20个氨基酸残基的信号序列和43个成熟蛋白残基组成的PHA氨基末端部分能有效地将转化酶靶向酵母液泡。短PHA - 转化酶融合体中的内部缺失表明,分选信息存在于成熟PHA的第14至23位残基之间。基于对相关凝集素三维结构的研究,这些残基中只有一部分在PHA表面可用于与假定的受体相互作用。PHA - 转化酶杂种中这些位置的氨基酸替换导致转化酶分泌。结果表明PHA中存在一个液泡靶向结构域,其中心位于成熟蛋白的第19位。PHA的这个序列与酵母羧肽酶Y中鉴定的液泡分选结构域也具有序列同源性。短PHA - 转化酶杂种蛋白中导致最高分泌水平的单个氨基酸改变在PHA的第21位引入了一个糖基化位点。这一观察结果表明,聚糖添加可能会干扰分选决定簇的识别。这些相同的氨基酸变化在长PHA - 转化酶融合体或PHA本身中并没有显著增加分泌。因此,PHA的第二个结构域可能与第一个结构域协同作用,以实现PHA的正确靶向。