Vargeese C, Sarma M S, Pragnacharyulu P V, Abushanab E, Li S Y, Stoeckler J D
Department of Medicinal Chemistry, University of Rhode Island, Kingston 02881.
J Med Chem. 1994 Oct 28;37(22):3844-9. doi: 10.1021/jm00048a020.
The synthesis and biological evaluation of three chain-hydroxylated (+)-erythro-9-(2S-hydroxy-3R-nonyl)adenine [(+)-EHNA] derivatives are reported. Hydroxy groups at positions 9', 8', and 8',9' (12, 25, and 16) were introduced by either epoxidation or hydroboration of a terminal olefinic intermediate. Affinities for calf intestinal adenosine deaminase (ADA) were determined from the steady-state inhibition of adenosine deamination. Ki values of 0.82, 3.8, 6.4, and 15.8 nM were estimated for (+)-EHNA, 9'-hydroxy-(+)-EHNA (12), 8'-hydroxy-(+)-EHNA (25), and 8',9'-dihydroxy-(+)-EHNA (16), respectively, by assuming a single class of binding sites. However, the data for all inhibitors conformed more closely to the kinetics of a heterogeneous system with different affinities for two or more binding sites. The fairly high potencies of 12 and 25 suggest that other substitutions at the terminal position of the nonyl chain could yield useful ADA inhibitors.
报道了三种链羟基化的(+)-赤藓糖型-9-(2S-羟基-3R-壬基)腺嘌呤[(+)-EHNA]衍生物的合成及生物学评价。通过末端烯烃中间体的环氧化或硼氢化反应,在9'、8'以及8'、9'(12、25和16)位引入羟基。通过腺苷脱氨作用的稳态抑制来测定对小牛肠腺苷脱氨酶(ADA)的亲和力。假设为单一结合位点类别,分别估算出(+)-EHNA、9'-羟基-(+)-EHNA(12)、8'-羟基-(+)-EHNA(25)和8'、9'-二羟基-(+)-EHNA(16)的Ki值为0.82、3.8、6.4和15.8 nM。然而,所有抑制剂的数据更符合对两个或更多结合位点具有不同亲和力的异质系统的动力学。12和25相当高的效力表明,壬基链末端位置的其他取代可能会产生有用的ADA抑制剂。