Ahn J H, Choi Y, Kwon Y M, Kim S G, Choi Y D, Lee J S
Department of Molecular Biology, Seoul National University, Korea.
Plant Cell. 1996 Sep;8(9):1477-90. doi: 10.1105/tpc.8.9.1477.
A novel hydroxyproline-rich glycoprotein (SbHRGP3) that consists of two different domains is encoded by an extensin gene from soybean. The first domain (domain 1) located at the N terminus is composed of 11 repeats of Ser-Pro4-Lys-His-Ser-Pro4-Tyr3-His, whereas the second domain (domain 2) at the C terminus contains five repeats of Ser-Pro4-Val-Tyr-Lys-Tyr-Lys-Ser-Pro4-Tyr-Lys-Tyr-Pro-Ser-Pro5-Tyr-Lys-T yr- Pro-Ser-Pro4-Val-Tyr-Lys-Tyr-Lys. These two repeat motifs are organized in an extremely well-ordered pattern in each domain, which suggests that SbHRGP3 belongs to a new group of proteins having the repeat motifs of two distinct groups of dicot extensins. The expression of the SbHRGP3 gene increased with seedling maturation, and its expression was relatively high in the mature regions of the hypocotyl and in the root of soybean seedlings. An SbHRGP3-beta-glucuronidase (SbHRGP3-GUS) chimeric gene was constructed and expressed in transgenic tobacco plants. The expression of the SbHRGP3-GUS gene was not induced by wounding alone in transgenic tobacco plants; sucrose was also required. Expression was specific to phloem tissues and cambium cells of leaves and stems. In transgenic tobacco seedlings, SbHRGP3-GUS gene expression was activated by the maturation of the primary root and then inactivated; however, reactivation was specifically at the epidermis of the zone from which the lateral root was to be initiated. Its reactivation occurred just before the lateral root initiation. These results indicate that the SbHRGP3 gene in different tissues responds to different signals.
一种由大豆延伸蛋白基因编码的新型富含羟脯氨酸糖蛋白(SbHRGP3)由两个不同结构域组成。位于N端的第一个结构域(结构域1)由11个Ser-Pro4-Lys-His-Ser-Pro4-Tyr3-His重复序列组成,而位于C端的第二个结构域(结构域2)包含5个Ser-Pro4-Val-Tyr-Lys-Tyr-Lys-Ser-Pro4-Tyr-Lys-Tyr-Pro-Ser-Pro5-Tyr-Lys-T yr- Pro-Ser-Pro4-Val-Tyr-Lys-Tyr-Lys重复序列。这两个重复基序在每个结构域中以极其有序的模式排列,这表明SbHRGP3属于具有两类双子叶植物延伸蛋白重复基序的新蛋白质组。SbHRGP3基因的表达随着幼苗成熟而增加,并且在大豆幼苗下胚轴的成熟区域和根中表达相对较高。构建了一个SbHRGP3-β-葡萄糖醛酸酶(SbHRGP3-GUS)嵌合基因并在转基因烟草植株中表达。在转基因烟草植株中,单独的创伤不会诱导SbHRGP3-GUS基因的表达;还需要蔗糖。表达特异性地出现在叶片和茎的韧皮部组织和形成层细胞中。在转基因烟草幼苗中,SbHRGP3-GUS基因表达在主根成熟时被激活然后失活;然而,重新激活特别发生在侧根起始区域的表皮。其重新激活发生在侧根起始之前。这些结果表明SbHRGP3基因在不同组织中对不同信号作出反应。