Agronomy Department, Ohio Agricultural Research and Development Center and Biotechnology Center, Ohio State University, Columbus, Ohio 43210.
Plant Physiol. 1990 Dec;94(4):1897-902. doi: 10.1104/pp.94.4.1897.
We have purified a cell wall protein from extracts of soybean (Glycine max) that was previously shown to be immunologically related to p33, a wound-induced carrot cell wall protein (Tierney ML, Wiechert J, Pluymers D [1988] Mol Gen Genet 211: 393-399). Amino acid composition analysis reveals that the protein is 36% proline and hydroxyproline and its amino-terminus was determined to be AsnTyrGluAsnProHypValTyrLysProHypThrGluLysProHypValTyr. In vivo [(3)H]proline labeling of soybean hypocotyl tissues and Western blot analysis indicate that the apical hook, a region characterized by active growth, is a predominant site for synthesis of this protein and that wounding does not significantly affect its synthesis or accumulation. Antibodies raised against the hook protein also cross-reacted with a higher molecular weight protein in cell wall extracts of wounded hook tissue. These data indicate that there are at least two related, proline-rich cell wall proteins in the hook region of soybean seedlings, one that appears to be developmentally regulated and another that is wound-inducible. RNA encoding the developmentally regulated seedling cell wall protein was detected in both the hook and elongating region of the hypocotyl. The presence of this RNA in the elongating region in the absence of detectable levels of the protein indicates either that the expression of this cell wall protein is subject to posttranscriptional control or that the rate of insolubilization of this protein increases in more mature regions of the hypocotyl.
我们从大豆(Glycine max)提取物中纯化了一种细胞壁蛋白,该蛋白先前被证明与 p33 免疫相关,p33 是一种伤诱导的胡萝卜细胞壁蛋白(Tierney ML、Wiechert J、Pluymers D [1988] Mol Gen Genet 211: 393-399)。氨基酸组成分析表明,该蛋白含有 36%的脯氨酸和羟脯氨酸,其氨基末端被确定为 AsnTyrGluAsnProHypValTyrLysProHypThrGluLysProHypValTyr。体内 [(3)H]脯氨酸标记的大豆下胚轴组织和 Western blot 分析表明,顶端弯钩是一个以活跃生长为特征的区域,是该蛋白合成的主要部位,而伤并不显著影响其合成或积累。针对钩蛋白的抗体也与受伤钩组织细胞壁提取物中的一种高分子量蛋白发生交叉反应。这些数据表明,在大豆幼苗的弯钩区域至少存在两种相关的富含脯氨酸的细胞壁蛋白,一种似乎受发育调控,另一种受伤诱导。在弯钩和伸长区的下胚轴中都检测到了编码发育调控的幼苗细胞壁蛋白的 RNA。在伸长区存在这种 RNA 而没有检测到该蛋白的水平表明,该细胞壁蛋白的表达受到转录后调控,或者该蛋白在更成熟的下胚轴区域中的不溶性增加。