Inaoka Y, Naruto S
Bioscience Research Laboratories, Sankyo Co., Ltd., Tokyo.
J Biochem. 1988 Nov;104(5):706-11. doi: 10.1093/oxfordjournals.jbchem.a122537.
Propioxatins A and B are inhibitors of enkephalinase B, which hydrolyzes enkephalin at the Gly-Gly bond. In order to clarify the structure-activity relationships of propioxatin, several compounds were synthesized and their inhibitory activity for not only enkephalinase B but also enkephalinase A was examined. The hydroxamic acid group in propioxatin was primarily essential for coordinating the metal ion in the active site of the enzyme. Among devalyl propioxatin A derivatives, the proline-containing compounds inhibited enkephalinase B and others inhibited both enzymes. An alteration of the character of the P3' amino acid valine in propioxatin A, e.g. amidation of carboxylic acid or replacement of the side chain, caused a 2 to 400-fold decrease of the inhibitory activity for enkephalinase B or an appearance of enkephalinase A inhibition with Ki values in the micromolar range. Substitution of the proline by alanine also resulted in a 1,000-fold loss of inhibitory activity for enkephalinase B. Propioxatin A was the most potent and specific inhibitor of enkephalinase B among the synthesized compounds. These potent and specific inhibitory effects were caused by the P2' proline residue, the P3' valine side chain and its free carboxylic acid. Each of the S1', S2', and S3' subsites in an enkephalinase B active site has a large and hydrophobic pocket, but the arrangement might be unique. The results could explain why enkephalinase B does not hydrolyze longer peptides.
丙氧昔汀A和B是脑啡肽酶B的抑制剂,脑啡肽酶B可在甘氨酰-甘氨酸键处水解脑啡肽。为了阐明丙氧昔汀的构效关系,合成了几种化合物,并检测了它们对脑啡肽酶B以及脑啡肽酶A的抑制活性。丙氧昔汀中的异羟肟酸基团对于与酶活性位点中的金属离子配位至关重要。在去缬氨酰丙氧昔汀A衍生物中,含脯氨酸的化合物抑制脑啡肽酶B,其他化合物则同时抑制两种酶。丙氧昔汀A中P3′位氨基酸缬氨酸性质的改变,例如羧酸酰胺化或侧链取代,会导致对脑啡肽酶B的抑制活性降低2至400倍,或者出现对脑啡肽酶A的抑制作用,其Ki值在微摩尔范围内。用丙氨酸取代脯氨酸也会导致对脑啡肽酶B的抑制活性丧失1000倍。在合成的化合物中,丙氧昔汀A是脑啡肽酶B最有效和最具特异性的抑制剂。这些强效且特异性的抑制作用是由P2′位脯氨酸残基、P3′位缬氨酸侧链及其游离羧酸引起的。脑啡肽酶B活性位点中的S1′、S2′和S3′亚位点均有一个大的疏水口袋,但排列方式可能独特。这些结果可以解释为什么脑啡肽酶B不水解更长的肽。