Kaiser C A, Botstein D
Mol Cell Biol. 1986 Jul;6(7):2382-91. doi: 10.1128/mcb.6.7.2382-2391.1986.
Nine mutations in the signal sequence region of the gene specifying the secreted Saccharomyces cerevisiae enzyme invertase were constructed in vitro. The consequences of these mutations were studied after returning the mutated genes to yeast cells. Short deletions and two extensive substitution mutations allowed normal expression and secretion of invertase. Other substitution mutations and longer deletions blocked the formation of extracellular invertase. Yeast cells carrying this second class of mutant gene expressed novel active internal forms of invertase that exhibited the following properties. The new internal proteins had the mobilities in denaturing gels expected of invertase polypeptides that had retained a defective signal sequence and were otherwise unmodified. The large increase in molecular weight characteristic of glycosylation was not seen. On nondenaturing gels the mutant enzymes were found as heterodimers with a normal form of invertase that is known to be cytoplasmic, showing that the mutant forms of the enzyme are assembled in the same compartment as the cytoplasmic enzyme. All of the mutant enzymes were soluble and not associated with the membrane components after fractionation of crude cell extracts on sucrose gradients. Therefore, these signal sequence mutations result in the production of active internal invertase that has lost the ability to enter the secretory pathway. This demonstrates that the signal sequence is required for the earliest steps in membrane translocation.
在体外构建了酿酒酵母分泌型转化酶基因信号序列区域的9个突变。将突变基因导入酵母细胞后,研究了这些突变的后果。短缺失和两个广泛的替换突变允许转化酶正常表达和分泌。其他替换突变和更长的缺失则阻止了细胞外转化酶的形成。携带第二类突变基因的酵母细胞表达了新型的活性内部形式的转化酶,这些转化酶具有以下特性。新的内部蛋白质在变性凝胶中的迁移率符合预期,即保留了有缺陷信号序列且未被其他修饰的转化酶多肽的迁移率。未观察到糖基化特征性的分子量大幅增加。在非变性凝胶上,突变酶被发现与已知为细胞质的正常形式的转化酶形成异二聚体,这表明酶的突变形式与细胞质酶在同一区室中组装。在蔗糖梯度上对粗细胞提取物进行分级分离后,所有突变酶都是可溶的,并且不与膜成分相关。因此,这些信号序列突变导致产生了失去进入分泌途径能力的活性内部转化酶。这表明信号序列是膜转运最早步骤所必需的。