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同工酶特异性酶抑制剂。11. L-同型半胱氨酸-ATP S-C5' 共价加合物作为大鼠甲硫氨酸腺苷转移酶的抑制剂。

Isozyme-specific enzyme inhibitors. 11. L-homocysteine-ATP S-C5' covalent adducts as inhibitors of rat methionine adenosyltransferases.

作者信息

Kappler F, Hai T T, Cotter R J, Hyver K J, Hampton A

出版信息

J Med Chem. 1986 Jun;29(6):1030-8. doi: 10.1021/jm00156a022.

Abstract

The title compounds (14a,b) were 5' epimers of a derivative of a phosphonate isostere of ATP in which the CH2OP alpha system of ATP was replaced by CH(R)CH2P alpha [R = L-S(CH2)2CH(NH2)CO2H]. They resisted synthesis via attempted S-alkylation of the corresponding epimeric 5'-mercapto derivatives. A practicable route to 14a,b commenced with Michael condensation of L-homocysteine with the diphenyl ester of the 5',6'-vinyl phosphonate analogue of 2',3'-O-isopropylideneadenosine 5'-phosphate. The resulting epimeric 5' thioethers were separated by reverse-phase HPLC. The two phenyl groups were replaced by benzyl groups, after which the alpha-amino acid residue was protected as an N-Boc methyl ester. Both benzyl groups were removed by hydrogenolysis, and the resulting phosphonic acid was converted into its pyrophosphoryl derivative. Blocking groups were then removed under conditions that furnished 14a and 14b without racemization of their L-amino acid residues. Also synthesized were the P beta-NH-P gamma imido analogue (15a) of 14a and the sulfoxide derivative (16a) of 14a. The structures of 14a and 16a were verified by FAB mass spectra, which revealed the protonated molecular ions of their sodium salts. All adducts appeared to function as dual substrate site inhibitors (competitive to ATP and to methionine) of the rat normal tissue (MAT-2) form of methionine adenosyltransferase (MAT); 14a and 15a [KM(ATP)/Ki = 4 and 9, respectively] were the most effective. Adduct 15a was the most effective inhibitor [KM(ATP)/Ki = 13] of the MAT-T form from rat hepatoma tissue; the kinetic data indicated dual-site inhibition by 15a with apparently complete coverage of the ATP site and incomplete coverage of the methionine site. The inhibition properties of the adducts indicated little preference in the order in which the two MAT forms bound ATP and methionine.

摘要

标题化合物(14a,b)是ATP膦酸酯类似物衍生物的5'差向异构体,其中ATP的CH2OPα系统被CH(R)CH2Pα取代[R = L-S(CH2)2CH(NH2)CO2H]。通过尝试对相应的差向异构5'-巯基衍生物进行S-烷基化来合成它们的方法受阻。一条可行的合成14a,b的路线始于L-高半胱氨酸与2',3'-O-异亚丙基腺苷5'-磷酸的5',6'-乙烯基膦酸酯类似物的二苯酯的迈克尔缩合反应。所得的差向异构5'硫醚通过反相高效液相色谱法分离。两个苯基被苄基取代,然后将α-氨基酸残基保护为N-Boc甲酯。通过氢解去除两个苄基,所得的膦酸转化为其焦磷酰基衍生物。然后在不使L-氨基酸残基外消旋的条件下去除保护基,得到14a和14b。还合成了14a的Pβ-NH-Pγ亚氨基类似物(15a)和14a的亚砜衍生物(16a)。14a和16a的结构通过FAB质谱得到验证,该质谱揭示了它们钠盐的质子化分子离子。所有加合物似乎都作为大鼠正常组织(MAT-2)形式的甲硫氨酸腺苷转移酶(MAT)的双底物位点抑制剂(对ATP和甲硫氨酸具有竞争性);14a和15a [KM(ATP)/ Ki分别为4和9]是最有效的。加合物15a是大鼠肝癌组织中MAT-T形式的最有效抑制剂[KM(ATP)/ Ki = 13];动力学数据表明15a具有双位点抑制作用,明显完全覆盖ATP位点,而不完全覆盖甲硫氨酸位点。加合物的抑制特性表明,两种MAT形式结合ATP和甲硫氨酸的顺序几乎没有偏好。

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