Borchardt R T, Wu Y S
J Med Chem. 1975 Mar;18(3):300-4. doi: 10.1021/jm00237a018.
Structural analogs of S-ADENOSYL-L-HONOCYSTEINE (L-SAG), WITH MODIFICATION IN THE RIBCOSE PORTION OF THE MOLECULE, HAVE BEEN SYNTHESIZED AND THEIR ABILITIES TO INHIBIT CATECHOL O-METHYLTRANSFERECE(COMT), phenylethanolamine N-methltransferase (PNMT) histamine N-methyltransferase (HMT),and hydroxyindole o-methytransferase (HIOMT) have been investigated. From these studies it was concluded that, in general, the 2'-hydroxyl and 3'-hydroxyl groups of the ribcose moiety of SAH play crucial roles in the binding of this molecule to most methyltransferases. However several interesting exceptions to this strict structural specificity have been observed. While S-3'-DEOXY-ADENOSYL-L-HOMOCYSTEINE PRODUCED NO INHIBITION OF HMT and HIOMT, it produced strong inhibition of the transmethylation catalyzed by PNMT and COMT. Likewise, S-2'-DEOXYADENOSYL-L-HOMOCYSTEINE AND S-5'-(9-(arabinofuranosyl)adenyl)-l-homocysteine had little or no effect of COMT, HMT, and HIOMT but were potent inhibtors of PNMT. The significance of these data relative to the nature of the SAH binding sites and the potential inhibitors of PNMT. The significance of these data relative to the nature of the SAH binding sites and the potential for in vivo differential inhibition of methyltransferases will be discussed.
已合成了S-腺苷-L-高半胱氨酸(L-SAG)在分子核糖部分有修饰的结构类似物,并研究了它们抑制儿茶酚-O-甲基转移酶(COMT)、苯乙醇胺N-甲基转移酶(PNMT)、组胺N-甲基转移酶(HMT)和羟基吲哚-O-甲基转移酶(HIOMT)的能力。从这些研究得出的结论是,一般来说,SAH核糖部分的2'-羟基和3'-羟基基团在该分子与大多数甲基转移酶的结合中起关键作用。然而,已观察到一些有趣的例外情况,这些例外不符合这种严格的结构特异性。虽然S-3'-脱氧腺苷-L-高半胱氨酸对HMT和HIOMT没有抑制作用,但它对PNMT和COMT催化的转甲基作用有强烈抑制作用。同样,S-2'-脱氧腺苷-L-高半胱氨酸和S-5'-(9-(阿拉伯呋喃糖基)腺苷基)-L-高半胱氨酸对COMT、HMT和HIOMT几乎没有影响,但却是PNMT的有效抑制剂。将讨论这些数据相对于SAH结合位点性质的意义以及PNMT潜在抑制剂的意义。还将讨论这些数据相对于SAH结合位点性质以及甲基转移酶体内差异抑制可能性的意义。