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液泡烟草蛋白AP24、几丁质酶和β-1,3-葡聚糖酶在转基因植物中的细胞外靶向作用

Extracellular targeting of the vacuolar tobacco proteins AP24, chitinase and beta-1,3-glucanase in transgenic plants.

作者信息

Melchers L S, Sela-Buurlage M B, Vloemans S A, Woloshuk C P, Van Roekel J S, Pen J, van den Elzen P J, Cornelissen B J

机构信息

MOGEN International NV, Leiden, Netherlands.

出版信息

Plant Mol Biol. 1993 Feb;21(4):583-93. doi: 10.1007/BF00014542.

Abstract

The Nicotiana tabacum ap24 gene encoding a protein with antifungal activity toward Phytophthora infestans has been characterized. Analysis of cDNA clones revealed that at least three ap24-like genes are induced in tobacco upon infection with tobacco mosaic virus. Amino acid sequencing of the purified protein showed that AP24 is synthesized as a preproprotein from which an amino-terminal signal peptide and a carboxyl-terminal propeptide (CTPP) are cleaved off during post-translational processing. The functional role of the CTPP was investigated by expressing chimeric genes encoding either wild-type AP24 or a mutant protein lacking the CTPP. Plants expressing the wild-type construct resulted in proteins properly sorted to the vacuole. In contrast, the proteins produced in plants expressing the mutant construct were secreted extracellularly, indicating that the CTPP is necessary for targeting of AP24 to the vacuoles. Similar results were obtained for vacuolar chitinases and beta-1,3-glucanases of tobacco. The extracellularly targeted mutant proteins were shown to have retained their biological activity. Together, these results suggest that within all vacuolar pathogenesis-related proteins the targeting information resides in a short carboxyl-terminal propeptide which is removed during or after transport to the plant vacuole.

摘要

已对编码对致病疫霉具有抗真菌活性蛋白质的烟草ap24基因进行了表征。对cDNA克隆的分析表明,烟草在感染烟草花叶病毒后,至少有三个ap24样基因被诱导。纯化蛋白的氨基酸测序表明,AP24最初以前体蛋白形式合成,在翻译后加工过程中,其氨基端信号肽和羧基端前肽(CTPP)被切除。通过表达编码野生型AP24或缺失CTPP的突变蛋白的嵌合基因,研究了CTPP的功能作用。表达野生型构建体的植物产生的蛋白质能正确分选到液泡中。相反,表达突变体构建体的植物产生的蛋白质被分泌到细胞外,这表明CTPP是AP24靶向液泡所必需的。烟草液泡几丁质酶和β-1,3-葡聚糖酶也得到了类似结果。细胞外靶向的突变蛋白显示保留了其生物活性。总之,这些结果表明,在所有液泡病程相关蛋白中,靶向信息存在于一个短的羧基端前肽中,该前肽在转运到植物液泡期间或之后被去除。

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