Dabrowska M, Jagielska E, Cieśla J, Płucienniczak A, Kwiatowski J, Wranicz M, Boireau P, Rode W
Nencki Institute of Experimental Biology, Polish Academy of Sciences, 3 Pasteur Street, 02-093 Warszawa, Poland.
Parasitology. 2004 Feb;128(Pt 2):209-21. doi: 10.1017/s0031182003004426.
The persistent expression of thymidylate synthase activity has previously been demonstrated not only in adult forms, but also in non-developing muscle larvae of Trichinella spiralis and T. pseudospiralis, pointing to an unusual pattern of cell cycle regulation, and prompting further studies on the developmental pattern of T. spiralis thymidylate synthase gene expression. The enzyme cDNA was cloned and sequenced, allowing the characterization of a single open reading frame of 307 amino acids coding for a putative protein of 35,582 Da molecular weight. The amino acid sequence of the parasite enzyme was analysed, the consensus phylogenetic tree built and its stability assessed. The aa sequence identity with thymidylate synthase was confirmed by the enzymatic activity of the recombinant protein expressed in E. coli. As compared with the enzyme purified from muscle larvae, it showed apparently similar Vmax value, but higher Km(app) values desscribing interactions with dUMP (28.8 microM vs. 3.9 microM) and (6RS,alphaS)-N(5,10)-methylenetetrahydrofolate (383 microM vs. 54.7 microM). With the coding region used as a probe, thymidylate synthase mRNA levels, relative to 18S rRNA, were found to be similar in muscle larvae, adult forms and newborn larvae, in agreement with muscle larvae cells being arrested in the cell cycle.
先前已证明,胸苷酸合成酶活性不仅在成虫中持续表达,在旋毛虫和伪旋毛虫的未发育肌幼虫中也持续表达,这表明细胞周期调控模式异常,并促使人们进一步研究旋毛虫胸苷酸合成酶基因表达的发育模式。该酶的cDNA被克隆并测序,从而确定了一个由307个氨基酸组成的单一开放阅读框,其编码的推定蛋白分子量为35,582 Da。分析了该寄生虫酶的氨基酸序列,构建了共祖系统发育树并评估了其稳定性。通过在大肠杆菌中表达的重组蛋白的酶活性,证实了与胸苷酸合成酶的氨基酸序列一致性。与从肌幼虫中纯化的酶相比,它显示出明显相似的Vmax值,但在描述与dUMP(28.8 microM对3.9 microM)和(6RS,αS)-N(5,10)-亚甲基四氢叶酸(383 microM对54.7 microM)相互作用时,Km(app)值更高。以编码区为探针,发现相对于18S rRNA,胸苷酸合成酶mRNA水平在肌幼虫、成虫和新生幼虫中相似,这与肌幼虫细胞在细胞周期中停滞一致。