Simanshu Dhirendra K, Savithri Handanahal S, Murthy Mathur R N
Molecular Biophysics Unit, Malleswaram, Bangalore, Karnataka 560 012, India.
J Biol Chem. 2006 Dec 22;281(51):39630-41. doi: 10.1074/jbc.M605721200. Epub 2006 Oct 17.
Two different pyridoxal 5'-phosphate-containing l-threonine deaminases (EC 4.3.1.19), biosynthetic and biodegradative, which catalyze the deamination of l-threonine to alpha-ketobutyrate, are present in Escherichia coli and Salmonella typhimurium. Biodegradative threonine deaminase (TdcB) catalyzes the first reaction in the anaerobic breakdown of l-threonine to propionate. TdcB, unlike the biosynthetic threonine deaminase, is insensitive to l-isoleucine and is activated by AMP. In the present study, TdcB from S. typhimurium was cloned and overexpressed in E. coli. In the presence of AMP or CMP, the recombinant enzyme was converted to the tetrameric form accompanied by significant enzyme activation. To provide insights into ligand-mediated oligomerization and enzyme activation, crystal structures of S. typhimurium TdcB and its complex with CMP were determined. In the native structure, TdcB is in a dimeric form, whereas in the TdcB.CMP complex, it exists in a tetrameric form with 222 symmetry and appears as a dimer of dimers. Tetrameric TdcB binds to four molecules of CMP, two at each of the dimer interfaces. Comparison of the dimer structure in the ligand (CMP)-free and -bound forms suggests that the changes induced by ligand binding at the dimer interface are essential for tetramerization. The differences observed in the tertiary and quaternary structures of TdcB in the absence and presence of CMP appear to account for enzyme activation and increased binding affinity for l-threonine. Comparison of TdcB with related pyridoxal 5'-phosphate-dependent enzymes points to structural and mechanistic similarities.
在大肠杆菌和鼠伤寒沙门氏菌中存在两种不同的含磷酸吡哆醛5'-磷酸的L-苏氨酸脱氨酶(EC 4.3.1.19),即生物合成型和生物降解型,它们催化L-苏氨酸脱氨生成α-酮丁酸。生物降解型苏氨酸脱氨酶(TdcB)催化L-苏氨酸厌氧分解为丙酸的第一步反应。与生物合成型苏氨酸脱氨酶不同,TdcB对L-异亮氨酸不敏感,并被AMP激活。在本研究中,鼠伤寒沙门氏菌的TdcB被克隆并在大肠杆菌中过表达。在AMP或CMP存在的情况下,重组酶转变为四聚体形式,并伴随着显著的酶激活。为了深入了解配体介导的寡聚化和酶激活,测定了鼠伤寒沙门氏菌TdcB及其与CMP复合物的晶体结构。在天然结构中,TdcB呈二聚体形式,而在TdcB·CMP复合物中,它以具有222对称性的四聚体形式存在,看起来是二聚体的二聚体。四聚体TdcB与四个CMP分子结合,在每个二聚体界面各结合两个。无配体(CMP)和有配体形式的二聚体结构比较表明,配体结合在二聚体界面诱导的变化对于四聚化至关重要。在无CMP和有CMP情况下TdcB的三级和四级结构中观察到的差异似乎解释了酶激活以及对L-苏氨酸结合亲和力的增加。将TdcB与相关的磷酸吡哆醛5'-磷酸依赖性酶进行比较,发现了结构和机制上的相似性。