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S-腺苷同型半胱氨酸和S-腺苷甲硫氨酸的2',3'-二醛衍生物对组胺N-甲基转移酶的亲和标记。失活动力学。

Affinity labeling of histamine N-methyltransferase by 2',3'-dialdehyde derivatives of S-adenosylhomocysteine and S-adenosylmethionine. Kinetics of inactivation.

作者信息

Borchardt R T, Wu Y S, Wu B S

出版信息

Biochemistry. 1978 Oct 3;17(20):4145-52. doi: 10.1021/bi00613a007.

Abstract

S-Adenosyl-L-methionine (AdoMet), S-adenosyl-L-homocysteine (L-AdoHcy), and related ribonucleosides have been oxidized with periodic acid to the corresponding 2',3'-dialdehydes. Both AdoMet dialdehyde and L-AdoHcy dialdehyde were observed to rapidly and irreversibly inactivate histamine N-methyltransferase (HMT). Equally active as an irreversible inhibitor was S-adenosyl-D-homocysteine dialdehyde (D-AdoHcy dialdehyde), which is consistent with the known affinity of HMT for S-adenosyl-D-homocysteine (D-AdoHcy). Other analogues of AdoHcy dialdehyde (S-adenosyl-L-cysteine dialdehyde, S-adenosyl-L-homocysteine sulfoxide dialdehyde, and adenosine dialdehyde) also produced irreversible inactivation of HMT, but at predictably slower rates. The corresponding acyclic 2',3'-ribonucleosides, which were obtained by NaBH4 reduction of the ribonucleosides dialdehydes, were found to be very weak, reversible inhibitors of HMT. Kinetic analysis of the inactivation of HMT produced by L-AdoHcy dialdehyde, AdoMet dialdehyde, and D-AdoHcy dialdehyde suggested mechanisms involving the formation of dissociable enzyme-inhibitor complexes prior to irreversible inactivation. Studies using L-[2,8-3H] AdoHcy dialdehyde revealed that incorporation of radioactivity into HMT closely paralleled the loss of enzyme activity. The results of these studies indicate that L-AdoHcy dialdehyde, D-AdoHcy dialdehyde, and AdoMet dialdehyde are affinity labeling reagents for HMT.

摘要

S-腺苷-L-甲硫氨酸(AdoMet)、S-腺苷-L-高半胱氨酸(L-AdoHcy)及相关核糖核苷已被高碘酸氧化为相应的2',3'-二醛。观察到AdoMet二醛和L-AdoHcy二醛均能迅速且不可逆地使组胺N-甲基转移酶(HMT)失活。作为不可逆抑制剂同样有效的是S-腺苷-D-高半胱氨酸二醛(D-AdoHcy二醛),这与HMT对S-腺苷-D-高半胱氨酸(D-AdoHcy)已知的亲和力一致。AdoHcy二醛的其他类似物(S-腺苷-L-半胱氨酸二醛、S-腺苷-L-高半胱氨酸亚砜二醛和腺苷二醛)也能使HMT产生不可逆失活,但速率可预测地较慢。通过用NaBH4还原核糖核苷二醛得到的相应无环2',3'-核糖核苷被发现是非常弱的、可逆的HMT抑制剂。对L-AdoHcy二醛、AdoMet二醛和D-AdoHcy二醛使HMT失活的动力学分析表明,其机制涉及在不可逆失活之前形成可解离的酶-抑制剂复合物。使用L-[2,8-3H] AdoHcy二醛的研究表明,放射性掺入HMT与酶活性丧失密切平行。这些研究结果表明,L-AdoHcy二醛、D-AdoHcy二醛和AdoMet二醛是HMT的亲和标记试剂。

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