United States Plant, Soil and Nutrition Laboratory, Agricultural Research Service, United States Department of Agriculture, Cornell University, Ithaca, New York 14853.
Plant Physiol. 1984 Mar;74(3):576-83. doi: 10.1104/pp.74.3.576.
Supplemental methionine in a complete culture medium increased the methionine content of the protein fraction of cultured soybean (Glycine max L. Merrill) cotyledons (Thompson, Madison, Muenster 1981 Phytochemistry 20: 941-945). To explain the observed increase in protein methionine, we have measured the amounts and subunit compositions of 7S and 11S storage proteins and determined the amino acid compositions of the three major protein fractions (2-5S, 7S, 11S) of seeds developed on plants and of cultured cotyledons grown in the presence or absence of supplemental l-methionine. Development of cultured cotyledons was representative of development of seeds on plants. The ratios of 11S to 7S proteins, the subunit contents, and amino acid compositions of their storage protein fractions were similar, but not identical. Supplemental methionine increased the mole percent methionine in each of the three protein fractions of cultured cotyledons and changed the amounts of several other amino acids. Supplemental methionine inhibited expression of the 7S beta-subunit gene. Concomitant with the absence of the beta-subunit, which contains no methionine, was an increase in the ratio of 11S to 7S proteins, and an increase in the methionine content of the subunits composing these fractions. Inhibition of beta-subunit gene expression by methionine in cultured cotyledons provides a reproducible, easily controlled system for the study of eucaryotic gene expression.
在完全培养基中补充蛋氨酸增加了培养的大豆(Glycine max L. Merrill)子叶的蛋白质部分的蛋氨酸含量(Thompson、Madison、Muenster 1981 Phytochemistry 20:941-945)。为了解释观察到的蛋白质蛋氨酸增加,我们测量了 7S 和 11S 储存蛋白的含量和亚基组成,并确定了在存在或不存在补充 L-蛋氨酸的情况下在植物上发育的种子和培养的子叶的三个主要蛋白质部分(2-5S、7S、11S)的氨基酸组成。培养的子叶的发育代表了植物上种子的发育。11S 与 7S 蛋白的比例、亚基含量以及它们的储存蛋白部分的氨基酸组成相似,但不完全相同。补充蛋氨酸增加了培养的子叶的三个蛋白质部分中的每个部分的蛋氨酸摩尔百分比,并改变了几种其他氨基酸的含量。补充蛋氨酸抑制了 7S β-亚基基因的表达。伴随着β-亚基的不存在,该亚基不含蛋氨酸,11S 与 7S 蛋白的比例增加,以及组成这些部分的亚基的蛋氨酸含量增加。在培养的子叶中,蛋氨酸对 β-亚基基因表达的抑制为真核基因表达的研究提供了一个可重复、易于控制的系统。