Nishizawa Keito, Maruyama Nobuyuki, Satoh Ryohei, Fuchikami Yoshihiro, Higasa Takahiko, Utsumi Shigeru
Laboratory of Food Quality Design and Development, Graduate School of Agriculture, Kyoto University, Uji, Kyoto 611-0011, Japan.
Plant J. 2003 Jun;34(5):647-59. doi: 10.1046/j.1365-313x.2003.01754.x.
In maturing seed cells, many newly synthesized proteins are transported to the protein storage vacuoles (PSVs) via vesicles unique to seed cells. Vacuolar sorting determinants (VSDs) in most of these proteins have been determined using leaf, root or suspension-cultured cells apart from seed cells. In this study, we examined the VSD of the alpha' subunit of beta-conglycinin (7S globulin), one of the major seed storage proteins of soybean, using Arabidopsis and soybean seeds. The wild-type alpha' was transported to the matrix of the PSVs in seed cells of transgenic Arabidopsis, and it formed crystalloid-like structures. Some of the wild-type alpha' was also transported to the translucent compartments (TLCs) in the PSV presumed to be the globoid compartments. However, a derivative lacking the C-terminal 10 amino acids was not transported to the PSV matrix, and was secreted out of the cells, although a portion was also transported to the TLCs. The C-terminal region of alpha' was sufficient to transport a green fluorescent protein (GFP) to the PSV matrix. These indicate that alpha' contains two VSDs: one is present in the C-terminal 10 amino acids and is for the PSV matrix; and the other is for the TLC (the globoid compartment). We further verified that the C-terminal 10 amino acids were sufficient to transport GFP to the PSV matrix in soybean seed cells by using a transient expression system.
在成熟的种子细胞中,许多新合成的蛋白质通过种子细胞特有的囊泡被运输到蛋白质储存液泡(PSV)中。除种子细胞外,大多数这些蛋白质中的液泡分选决定簇(VSD)已通过叶、根或悬浮培养细胞确定。在本研究中,我们利用拟南芥和大豆种子研究了大豆主要种子储存蛋白之一β-伴大豆球蛋白(7S球蛋白)α'亚基的VSD。野生型α'被运输到转基因拟南芥种子细胞中PSV的基质中,并形成类晶体结构。一些野生型α'也被运输到PSV中推测为球状体区室的半透明区室(TLC)。然而,缺少C末端10个氨基酸的衍生物没有被运输到PSV基质中,而是被分泌到细胞外,尽管有一部分也被运输到了TLC中。α'的C末端区域足以将绿色荧光蛋白(GFP)运输到PSV基质中。这些表明α'包含两个VSD:一个存在于C末端10个氨基酸中,用于PSV基质;另一个用于TLC(球状体区室)。我们通过瞬时表达系统进一步验证了C末端10个氨基酸足以将GFP运输到大豆种子细胞中的PSV基质中。