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125I-束丝菌素与大鼠脑乙酰胆碱酯酶的结合。该复合物仍能结合氟磷酸二异丙酯。

Binding of 125I-fasciculin to rat brain acetylcholinesterase. The complex still binds diisopropyl fluorophosphate.

作者信息

Marchot P, Khélif A, Ji Y H, Mansuelle P, Bougis P E

机构信息

Centre National de la Recherche Scientifique, Unité de Recherche Associée URA 1455, Laboratoire de Biochimie, Faculté de Médecine, Secteur Nord, Université d'Aix-Marseille II, France.

出版信息

J Biol Chem. 1993 Jun 15;268(17):12458-67.

PMID:8509385
Abstract

Iodination of fasciculin 3 (FAS3) from Dendroaspis viridis venom provided us with a fully active specific probe of fasciculin binding sites on rat brain acetylcholinesterase (AChE). Binding and inhibition are concomitant, as association and inhibition rate constants k1 and ki are identical. The 125I-FAS3.AChE complex dissociates very slowly (t 1/2 = 48 h) and is characterized by a dissociation constant, Kd, of 0.4 pM. All the specific binding of 125I-FAS3 to AChE is prevented by FAS3 as from D. angusticeps venom (Kd = 0.4, 14, and 25 pM, respectively). It is also prevented by propidium iodide, BW284C51, and d-tubocurarine, which bind to peripheral anionic sites of AChE, by Ca2+ and Mg2+, known to enhance AChE activity through an allosteric phenomenon and by acetylthiocholine concentrations which lead to excess substrate inhibition of the enzyme. Diisopropyl fluorphosphate and paroxon, which inhibit AChE by phosphorylating the catalytic serine, have no effect on either the binding rate or the number of binding sites of 125I-FAS3. O-Ethyl-S2-diisopropylaminoethyl methylphosphonothionate, however, which binds irreversibly to the AChE catalytic site but reversibly to a peripheral site, induces a 130% increase in the binding rate of 125I-FAS3, without changing the total number of 125I-FAS3 binding sites. Our results demonstrate that fasciculins bind on a peripheral site of AChE, distinct from the catalytic site and, at least partly, common with the sites on which some cationic inhibitors and the substrate in excess bind. Since phosphorylation of the catalytic serine (esteratic subsite) by [1,3-3H]diisopropyl fluorophosphate can still occur on the FAS3.AChE complex, the structural modification induced by fasciculins may affect the anionic subsite of AChE catalytic site.

摘要

对绿曼巴蛇毒液中的束丝菌素3(FAS3)进行碘化处理,为我们提供了一种针对大鼠脑乙酰胆碱酯酶(AChE)上束丝菌素结合位点的完全活性特异性探针。结合与抑制是相伴发生的,因为缔合速率常数k1和抑制速率常数ki是相同的。125I - FAS3.AChE复合物解离非常缓慢(半衰期t1/2 = 48小时),其解离常数Kd为0.4 pM。来自非洲绿曼巴蛇毒液的FAS3(Kd分别为0.4、14和25 pM)可完全阻止125I - FAS3与AChE的所有特异性结合。碘化丙啶、BW284C51和d - 筒箭毒碱也可阻止这种结合,它们与AChE的外周阴离子位点结合;Ca2+和Mg2+也有此作用,已知它们通过变构现象增强AChE活性;乙酰硫代胆碱浓度会导致酶的底物过量抑制,也能阻止这种结合。二异丙基氟磷酸酯和对氧磷通过使催化丝氨酸磷酸化来抑制AChE,它们对125I - FAS3的结合速率或结合位点数量均无影响。然而,O - 乙基 - S2 - 二异丙基氨基乙基甲基硫代磷酸酯虽不可逆地结合到AChE催化位点,但可逆地结合到外周位点,它可使125I - FAS3的结合速率提高130%,而不改变125I - FAS3结合位点的总数。我们的结果表明,束丝菌素结合在AChE的外周位点上,该位点与催化位点不同,且至少部分与一些阳离子抑制剂和过量底物所结合的位点相同。由于[1,3 - 3H]二异丙基氟磷酸酯对催化丝氨酸(酯解亚位点)的磷酸化在FAS3.AChE复合物上仍可发生,束丝菌素诱导的结构修饰可能会影响AChE催化位点的阴离子亚位点。

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