Kim Cheol Soo, Hunter Brenda G, Kraft Jeffery, Boston Rebecca S, Yans Sarah, Jung Rudolf, Larkins Brian A
Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721, USA.
Plant Physiol. 2004 Jan;134(1):380-7. doi: 10.1104/pp.103.031310. Epub 2003 Dec 4.
Defective endosperm* (De*)-B30 is a dominant maize (Zea mays) mutation that depresses zein synthesis in the developing endosperm. The mutant kernels have an opaque, starchy phenotype, malformed zein protein bodies, and highly increased levels of binding protein and other chaperone proteins in the endosperm. Immunoblotting revealed a novel alpha-zein protein in De*-B30 that migrates between the 22- and 19-kD alpha-zein bands. Because the De*-B30 mutation maps in a cluster of 19-kD alpha-zein genes, we characterized cDNA clones encoding these proteins from a developing endosperm library. This led to the identification of a 19-kD alpha-zein cDNA in which proline replaces serine at the 15th position of the signal peptide. Although the corresponding gene does not appear to be highly expressed in De*-B30, it was found to be tightly linked with the mutant phenotype in a segregating F2 population. Furthermore, when the protein was synthesized in yeast cells, the signal peptide appeared to be less efficiently processed than when serine replaced proline. To test whether this gene is responsible for the De*-B30 mutation, transgenic maize plants expressing this sequence were created. T1 seeds originating from the transformants manifested an opaque kernel phenotype with enhanced levels of binding protein in the endosperm, similar to De*-B30. These results are consistent with the hypothesis that the De*-B30 mutation causes a defective signal peptide in a 19-kD alpha-zein protein.
胚乳缺陷型(De*)-B30是玉米(Zea mays)中的一种显性突变,它会抑制发育中的胚乳中醇溶蛋白的合成。突变籽粒具有不透明的淀粉质表型、畸形的醇溶蛋白蛋白体,并且胚乳中结合蛋白和其他伴侣蛋白的水平大幅增加。免疫印迹分析显示,在De*-B30中有一种新的α-醇溶蛋白,其迁移位置在22-kD和19-kD的α-醇溶蛋白条带之间。由于De*-B30突变定位在19-kD α-醇溶蛋白基因簇中,我们从发育中的胚乳文库中鉴定了编码这些蛋白的cDNA克隆。这导致鉴定出一个19-kD α-醇溶蛋白cDNA,其中信号肽的第15位脯氨酸取代了丝氨酸。尽管相应的基因在De*-B30中似乎没有高表达,但在分离的F2群体中发现它与突变表型紧密连锁。此外,当该蛋白在酵母细胞中合成时,信号肽的加工效率似乎比丝氨酸取代脯氨酸时更低。为了测试该基因是否是De*-B30突变的原因,构建了表达该序列的转基因玉米植株。来自转化体的T1种子表现出不透明的籽粒表型,胚乳中结合蛋白水平升高,类似于De*-B30。这些结果与以下假设一致:De*-B30突变导致19-kD α-醇溶蛋白中的信号肽存在缺陷。