DeRuiter J, Mayfield C A
Department of Pharmacal Sciences, School of Pharmacy, Auburn University, AL 36849-5503.
Biochem Pharmacol. 1990 Nov 15;40(10):2219-26. doi: 10.1016/0006-2952(90)90715-w.
A series of substituted N-[[(4-benzoylamino)phenyl]sulfonyl]amino acids (BAPS-amino acids) were synthesized by established methods, and the stereochemistry of the products was confirmed by HPLC analysis after chiral derivatization. When tested against aldose reductase (alditol:NADP+ oxidoreductase; EC 1.1.1.21; ALR2) isolated from rat lens, all of the BAPS-amino acids were determined to be significantly more inhibitory than the corresponding N-(phenylsulfonyl)amino acids. Structure-inhibition and enzyme kinetic analyses suggest that the BAPS-amino acids inhibit ALR2 by a mechanism similar to the N-(phenylsulfonyl)amino acids. However, multiple inhibition analyses indicate that the increased inhibitory activity of the BAPS-amino acids is a result of interaction with multiple sites present on ALR2. Enzyme specificity studies with several of the BAPS-amino acids demonstrated that these compounds do not produce significant inhibition of other nucleotide-requiring enzymes including aldehyde reductase (alcohol: NADP+ oxidoreductase; EC 1.1.1.2; ALR1).
通过既定方法合成了一系列取代的N-[[(4-苯甲酰氨基)苯基]磺酰基]氨基酸(BAPS-氨基酸),产物的立体化学在进行手性衍生化后通过高效液相色谱分析得以确认。当针对从大鼠晶状体中分离出的醛糖还原酶(醛糖醇:NADP+氧化还原酶;EC 1.1.1.21;ALR2)进行测试时,所有BAPS-氨基酸的抑制作用均被确定显著强于相应的N-(苯基磺酰基)氨基酸。结构-抑制和酶动力学分析表明,BAPS-氨基酸通过与N-(苯基磺酰基)氨基酸类似的机制抑制ALR2。然而,多重抑制分析表明,BAPS-氨基酸抑制活性的提高是与ALR2上存在的多个位点相互作用的结果。对几种BAPS-氨基酸进行的酶特异性研究表明,这些化合物对包括醛还原酶(醇:NADP+氧化还原酶;EC 1.1.1.2;ALR1)在内的其他需要核苷酸的酶没有显著抑制作用。