Van den Bergh Karolien P B, Rougé Pierre, Proost Paul, Coosemans Jozef, Krouglova Tanya, Engelborghs Yves, Peumans Willy J, Van Damme Els J M
Laboratory of Phytopathology and Plant Protection, Katholieke Universiteit Leuven, Willem de Croylaan 42, 3001 Leuven, Belgium.
Planta. 2004 Jun;219(2):221-32. doi: 10.1007/s00425-004-1238-1. Epub 2004 Mar 27.
Two structurally different chitin-binding proteins were isolated from bark and leaves of the spindle tree (Euonymus europaeus L.). Both the small hevein-like chitin-binding protein (Ee-CBP) and the classical class-I chitinase (Ee-chitinase) possess antifungal properties, Ee-CBP being far more potent than Ee-chitinase. In addition, Ee-CBP and Ee-chitinase display a pronounced synergistic effect when added together in the test medium. Determination of the biological activities indicates that the synergism between Ee-CBP and Ee-chitinase relies on a different mode of action. Cloning and sequencing of the corresponding genes further revealed that Ee-CBP and Ee-chitinase are simultaneously expressed in bark and leaf tissues, and hence can act synergistically in planta. Moreover, analysis of the deduced sequences allowed the exact relationship between the structurally different Ee-CBP and Ee-chitinase to be corroborated. Both proteins are synthesized as similar chimeric precursors consisting of an N-terminal hevein domain linked to a C-terminal chitinase-like domain by a hinge region. However, whereas in the case of Ee-chitinase the C-terminal chitinase domain remains linked to the N-terminal hevein domain, the corresponding domain is cleaved from the Ee-CBP-precursor resulting in the formation of the hevein-type Ee-CBP. Since both precursors are--apart from the hinge region between the hevein and chitinase domains--very similar, the Ee-CBP/Ee-chitinase system offers a unique opportunity to study the importance of sequence and/or structural information comprised in the hinge region for the posttranslational processing of the respective precursor proteins.
从卫矛(Euonymus europaeus L.)的树皮和叶片中分离出两种结构不同的几丁质结合蛋白。小的类橡胶素几丁质结合蛋白(Ee-CBP)和经典的I类几丁质酶(Ee-几丁质酶)都具有抗真菌特性,Ee-CBP的效力远高于Ee-几丁质酶。此外,在测试培养基中一起添加时,Ee-CBP和Ee-几丁质酶表现出明显的协同效应。生物活性测定表明,Ee-CBP和Ee-几丁质酶之间的协同作用依赖于不同的作用方式。相应基因的克隆和测序进一步表明,Ee-CBP和Ee-几丁质酶在树皮和叶片组织中同时表达,因此可以在植物体内协同发挥作用。此外,对推导序列的分析证实了结构不同的Ee-CBP和Ee-几丁质酶之间的确切关系。这两种蛋白质均以前体嵌合体的形式合成,由一个N端橡胶素结构域通过一个铰链区与一个C端几丁质酶样结构域相连。然而,在Ee-几丁质酶中,C端几丁质酶结构域仍与N端橡胶素结构域相连,而相应结构域则从Ee-CBP前体上切割下来,形成橡胶素型Ee-CBP。由于除了橡胶素和几丁质酶结构域之间的铰链区外,这两种前体非常相似,Ee-CBP/Ee-几丁质酶系统为研究铰链区包含的序列和/或结构信息对各自前体蛋白翻译后加工的重要性提供了独特的机会。