Pothipongsa Apiradee, Jantaro Saowarath, Salminen Tiina A, Incharoensakdi Aran
Laboratory of Cyanobacterial Biotechnology, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.
Structural Bioinformatics Laboratory, Biochemistry, Faculty of Science and Engineering, Åbo Akademi University, 20520, Turku, Finland.
World J Microbiol Biotechnol. 2017 Apr;33(4):72. doi: 10.1007/s11274-017-2242-5. Epub 2017 Mar 15.
Spermidine synthase (Spds) catalyzes the formation of spermidine by transferring the aminopropyl group from decarboxylated S-adenosylmethionine (dcSAM) to putrescine. The Synechococcus spds gene encoding Spds was expressed in Escherichia coli. The purified recombinant enzyme had a molecular mass of 33 kDa and showed optimal activity at pH 7.5, 37 °C. The enzyme had higher affinity for dcSAM (K , 20 µM) than for putrescine (K , 111 µM) and was highly specific towards the diamine putrescine with no activity observed towards longer chain diamines. The three-dimensional structural model for Synechococcus Spds revealed that most of the ligand binding residues in Spds from Synechococcus sp. PCC 7942 are identical to those of human and parasite Spds. Based on the model, the highly conserved acidic residues, Asp89, Asp159 and Asp162, are involved in the binding of substrates putrescine and dcSAM and Pro166 seems to confer substrate specificity towards putrescine.
亚精胺合酶(Spds)通过将来自脱羧S-腺苷甲硫氨酸(dcSAM)的氨丙基转移至腐胺来催化亚精胺的形成。编码Spds的聚球藻属spds基因在大肠杆菌中表达。纯化后的重组酶分子量为33 kDa,在pH 7.5、37 °C时表现出最佳活性。该酶对dcSAM(K ,20 µM)的亲和力高于对腐胺(K ,111 µM)的亲和力,并且对二胺腐胺具有高度特异性,对更长链的二胺没有活性。聚球藻属Spds的三维结构模型显示,聚球藻属PCC 7942的Spds中大多数配体结合残基与人和寄生虫的Spds相同。基于该模型,高度保守的酸性残基Asp89、Asp159和Asp162参与底物腐胺和dcSAM的结合,而Pro166似乎赋予了对腐胺的底物特异性。