You Delin, Wang Lianrong, Yao Fen, Zhou Xiufen, Deng Zixin
Laboratory of Microbial Metabolism and College of Life Science and Biotechnology, Shanghai Jiaotong University, Shanghai 200030, China.
Biochemistry. 2007 May 22;46(20):6126-33. doi: 10.1021/bi602615k. Epub 2007 May 1.
A novel DNA modification system by sulfur (S) in Streptomyces lividans 66 was reported to be encoded by a cluster of five genes designated dndA-E [Zhou, X., He, X., Liang, J., Li, A., Xu, T., Kieser, T., Helmann, J. D., and Deng, Z. (2005) Mol. Microbiol. 57, 1428-1438]. The dndA gene was cloned and the protein product expressed in Escherichia coli, purified to homogeneity, and characterized as a homodimeric protein of ca. 91 kDa. Purified DndA has a yellow color and UV-visible spectra characteristic of a pyridoxal phosphate-containing enzyme and was proven to be a cysteine desulfurase able to catalyze removal of elemental S atoms from l-cysteine to produce l-alanine with substrate specificity similar to that of E. coli IscS. DndC was also purified to homogeneity and found to contain a 4Fe-4S cluster by spectral analysis and have obvious ATP pyrophosphatase activity. DndA could catalyze iron-sulfur cluster assembly by activation of apo-Fe DndC protein prepared by removal of its iron-sulfur cluster using alpha,alpha'-dipyridyl. A mutated DndA, with serine substituted for cysteine at position 327, which was confirmed to have lost its corresponding cysteine desulfurase activity, also lost its ability to reactivate the apo-Fe DndC. The likely involvement of an interaction between DndA and DndC in the biochemical pathway for the unusual site-specific DNA modification in S. lividans 66 is discussed.
据报道,在天蓝色链霉菌66中,一种由硫(S)介导的新型DNA修饰系统由一组名为dndA-E的五个基因编码[周,X.,何,X.,梁,J.,李,A.,徐,T.,基泽,T.,赫尔曼,J.D.,邓,Z.(2005)《分子微生物学》57,1428 - 1438]。克隆了dndA基因,并在大肠杆菌中表达其蛋白产物,纯化至同质,其特征为约91 kDa的同二聚体蛋白。纯化的DndA呈黄色,具有含磷酸吡哆醛酶的紫外可见光谱特征,经证实是一种半胱氨酸脱硫酶,能够催化从L - 半胱氨酸中去除元素硫原子以产生L - 丙氨酸,其底物特异性与大肠杆菌IscS相似。DndC也纯化至同质,通过光谱分析发现其含有一个4Fe - 4S簇,并具有明显的ATP焦磷酸酶活性。DndA可以通过激活利用α,α'-联吡啶去除其铁硫簇后制备的脱辅基铁DndC蛋白来催化铁硫簇组装。一个在327位丝氨酸取代半胱氨酸的突变型DndA,已证实其相应的半胱氨酸脱硫酶活性丧失,同时也失去了重新激活脱辅基铁DndC的能力。本文讨论了DndA与DndC之间的相互作用可能参与天蓝色链霉菌66中异常位点特异性DNA修饰生化途径的情况。