Li Shi-Sheng, Gullbo Joachim, Lindholm Petra, Larsson Rolf, Thunberg Eva, Samuelsson Gunnar, Bohlin Lars, Claeson Per
Division of Pharmacognosy, Department of Medicinal Chemistry, Uppsala Biomedical Center, PO Box 574, SE-751 23, Uppsala, Sweden.
Biochem J. 2002 Sep 1;366(Pt 2):405-13. doi: 10.1042/BJ20020221.
A new basic protein, designated ligatoxin B, containing 46 amino acid residues has been isolated from the mistletoe Phoradendron liga (Gill.) Eichl. (Viscaceae). The protein's primary structure, determined unambiguously using a combination of automated Edman degradation, trypsin enzymic digestion, and tandem MS analysis, was 1-KSCCPSTTAR-NIYNTCRLTG-ASRSVCASLS-GCKIISGSTC-DSGWNH-46. Ligatoxin B exhibited in vitro cytotoxic activities on the human lymphoma cell line U-937-GTB and the primary multidrug-resistant renal adenocarcinoma cell line ACHN, with IC50 values of 1.8 microM and 3.2 microM respectively. Sequence alignment with other thionins identified a new member of the class 3 thionins, ligatoxin B, which is similar to the earlier described ligatoxin A. As predicted by the method of homology modelling, ligatoxin B shares a three-dimensional structure with the viscotoxins and purothionins and so may have the same mode of cytotoxic action. The novel similarities observed by structural comparison of the helix-turn-helix (HTH) motifs of the thionins, including ligatoxin B, and the HTH DNA-binding proteins, led us to propose the working hypothesis that thionins represent a new group of DNA-binding proteins. This working hypothesis could be useful in further dissecting the molecular mechanisms of thionin cytotoxicity and of thionin opposition to multidrug resistance, and useful in clarifying the physiological function of thionins in plants.
从桑寄生科植物阔叶槲寄生(Phoradendron liga (Gill.) Eichl.)中分离出一种新的碱性蛋白,命名为连接毒素B,它含有46个氨基酸残基。通过自动Edman降解、胰蛋白酶酶解和串联质谱分析相结合的方法明确确定了该蛋白的一级结构为1-KSCCPSTTAR-NIYNTCRLTG-ASRSVCASLS-GCKIISGSTC-DSGWNH-46。连接毒素B对人淋巴瘤细胞系U-937-GTB和原发性多药耐药肾腺癌细胞系ACHN表现出体外细胞毒性活性,IC50值分别为1.8微摩尔/升和3.2微摩尔/升。与其他硫堇蛋白的序列比对确定了3类硫堇蛋白的一个新成员——连接毒素B,它与先前描述的连接毒素A相似。正如同源建模方法所预测的,连接毒素B与槲寄生毒素和硫代苹果酸硫蛋白具有相同的三维结构,因此可能具有相同的细胞毒性作用模式。通过对包括连接毒素B在内的硫堇蛋白的螺旋-转角-螺旋(HTH)基序与HTH DNA结合蛋白进行结构比较,观察到的新相似性使我们提出一个工作假设,即硫堇蛋白代表一组新的DNA结合蛋白。这个工作假设可能有助于进一步剖析硫堇蛋白细胞毒性的分子机制以及硫堇蛋白对抗多药耐药性的机制,也有助于阐明硫堇蛋白在植物中的生理功能。