Donini Stefano, Percudani Riccardo, Credali Alfredo, Montanini Barbara, Sartori Andrea, Peracchi Alessio
Department of Biochemistry and Molecular Biology, University of Parma, 43100 Parma, Italy.
Biochem Biophys Res Commun. 2006 Dec 1;350(4):922-8. doi: 10.1016/j.bbrc.2006.09.112. Epub 2006 Sep 29.
The genomes of several vertebrates contain two genes encoding proteins highly similar to threonine synthase (TS), even though the biosynthesis of l-threonine (l-Thr) is not known to occur in these animals. We report a bioinformatic analysis of the two TS-like genes, the recombinant expression of one murine TS homolog (mTSH2) and its initial biochemical characterization. Recombinant mTSH2 contained bound pyridoxal-5'-phosphate (PLP), but did not synthesize l-Thr. The enzyme did, however, bind O-phospho-homoserine (PHS; the actual TS substrate) and degraded it to alpha-ketobutyrate, phosphate, and ammonia-a known side reaction of microbial TSs. mTSH2 also degraded O-phospho-threonine (PThr) to alpha-ketobutyrate, showing that it can act as a catabolic phospho-lyase on both gamma- and beta-phosphorylated substrates. These findings suggest an unusual evolutionary origin for mTSH2, whereby an original TS enzyme became 'recycled' into a phospho-lyase upon dismissal, in metazoa, of the l-Thr biosynthetic pathway.
几种脊椎动物的基因组包含两个编码与苏氨酸合酶(TS)高度相似蛋白质的基因,尽管在这些动物中未知存在L-苏氨酸(L-Thr)的生物合成。我们报告了对这两个类TS基因的生物信息学分析、一种小鼠TS同源物(mTSH2)的重组表达及其初步生化特性。重组mTSH2含有结合的磷酸吡哆醛(PLP),但不合成L-Thr。然而,该酶确实结合了O-磷酸高丝氨酸(PHS;实际的TS底物)并将其降解为α-酮丁酸、磷酸盐和氨——这是微生物TSs已知的副反应。mTSH2还将O-磷酸苏氨酸(PThr)降解为α-酮丁酸,表明它可以作为一种分解代谢磷酸裂解酶作用于γ-和β-磷酸化底物。这些发现表明mTSH2有一个不同寻常的进化起源,即后生动物中L-Thr生物合成途径被摒弃后,一种原始的TS酶在被废弃时变成了一种磷酸裂解酶。