Dickinson C D, Scott M P, Hussein E H, Argos P, Nielsen N C
United States Department of Agriculture, Purdue University, West Lafayette, Indiana 47907.
Plant Cell. 1990 May;2(5):403-13. doi: 10.1105/tpc.2.5.403.
A Gy4 glycinin cDNA was modified and used to produce structurally altered 11S storage protein subunits. We evaluated these modified subunits for their ability to assemble into oligomers. Alterations made in the acidic polypeptide changed the subunit solubility characteristics but did not eliminate assembly. Modifications in the basic polypeptide usually eliminated assembly of subunits into trimers. A region exhibiting high natural variability located at the COOH terminus of the acidic polypeptide that we have designated the hypervariable region was also studied. Extensive deletions and insertions were tolerated in the hypervariable region without perturbing subunit assembly. Some of the insertions significantly increased the methionine content in the Gy4 glycinin subunit. Together, our results indicated that the structure of the basic polypeptide was more critical for assembly of trimers than that of the acidic polypeptide, an observation that implies that the basic polypeptides direct trimer formation. The assembly assays described here will be useful in efforts to improve seed quality. Using them, the effects of modifications to the storage protein subunits can be rapidly evaluated before introducing the mutated genes into plants.
对一个大豆球蛋白Gy4 cDNA进行修饰,并用于生产结构改变的11S贮藏蛋白亚基。我们评估了这些修饰后的亚基组装成寡聚体的能力。酸性多肽的改变改变了亚基的溶解性特征,但并未消除组装。碱性多肽的修饰通常会消除亚基组装成三聚体的能力。我们还研究了位于酸性多肽COOH末端的一个表现出高自然变异性的区域,我们将其命名为高变区。在高变区,广泛的缺失和插入是可以耐受的,而不会干扰亚基组装。一些插入显著增加了Gy4大豆球蛋白亚基中的蛋氨酸含量。总之,我们的结果表明,碱性多肽的结构对三聚体组装比酸性多肽的结构更为关键,这一观察结果表明碱性多肽指导三聚体的形成。这里描述的组装分析将有助于提高种子质量。利用它们,可以在将突变基因导入植物之前快速评估贮藏蛋白亚基修饰的效果。