Kelland J G, Arnold L D, Palcic M M, Pickard M A, Vederas J C
J Biol Chem. 1986 Oct 5;261(28):13216-23.
Analogs (1----6) of diaminopimelic acid have been synthesized and tested for inhibition of meso-diaminopimelate decarboxylases from Bacillus sphaericus IFO 3525 and from wheat germ (Triticum vulgaris). Difluoromethyl diaminopimelate 1 does not irreversibly inactivate or strongly competitively inhibit either enzyme. Lanthionine sulfoxides (2ab, 2c, and 2d) are good competitive inhibitors (about 50% inhibition at 1 mM) of both decarboxylases. The meso and LL-isomers of lanthionine sulfone (3ab and 3c) and lanthionine (6ab and 6c) are weaker competitive inhibitors (about 50% inhibition at 10-20 mM). The corresponding DD-isomers (3d and 6d) are less effective. The N-modified analogs are the most potent competitive inhibitors. The inhibition constant (Ki) values for B. sphaericus and wheat germ decarboxylases with N-hydroxydiaminopimelate 4 (mixture of isomers) are 0.91 and 0.71 mM, respectively; for the N-aminodiaminopimelate 5 (mixture of isomers) the Ki values are 0.10 and 0.084 mM, respectively. These N-modified analogs do not effectively inhibit L-lysine decarboxylase. None of the compounds showed any time-dependent inactivation of the decarboxylases, in contrast to behavior of other pyridoxal phosphate-dependent enzymes with analogous substrate derivatives. Possible mechanisms of inhibition are discussed. In preliminary tests for antibiotic activity 4 and 5 both gave 75% growth inhibition of Bacillus megaterium at 20 micrograms/ml in defined media. Other analogs (1----3) showed essentially no antibacterial activity.
已合成了二氨基庚二酸的类似物(1 - 6),并测试了它们对球形芽孢杆菌IFO 3525和小麦胚芽(普通小麦)中内消旋二氨基庚二酸脱羧酶的抑制作用。二氟甲基二氨基庚二酸1不会使任何一种酶不可逆失活或产生强烈的竞争性抑制。羊毛硫氨酸亚砜(2ab、2c和2d)是两种脱羧酶的良好竞争性抑制剂(在1 mM时约有50%的抑制率)。羊毛硫氨酸砜(3ab和3c)和羊毛硫氨酸(6ab和6c)的内消旋体和LL - 异构体是较弱的竞争性抑制剂(在10 - 20 mM时约有50%的抑制率)。相应的DD - 异构体(3d和6d)效果较差。N - 修饰的类似物是最有效的竞争性抑制剂。N - 羟基二氨基庚二酸4(异构体混合物)对球形芽孢杆菌和小麦胚芽脱羧酶的抑制常数(Ki)值分别为0.91和0.71 mM;对于N - 氨基二氨基庚二酸5(异构体混合物),Ki值分别为0.10和0.084 mM。这些N - 修饰的类似物不能有效抑制L - 赖氨酸脱羧酶。与其他吡哆醛磷酸依赖性酶与类似底物衍生物的行为相反,这些化合物均未表现出对脱羧酶的任何时间依赖性失活。讨论了可能的抑制机制。在抗生素活性的初步测试中,4和5在限定培养基中浓度为20微克/毫升时均对巨大芽孢杆菌有75%的生长抑制作用。其他类似物(1 - 3)基本上没有抗菌活性。