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正常和营养不良小鼠肌肉中乙酰胆碱酯酶和丁酰胆碱酯酶的G4形式与蓖麻凝集素的相互作用不同。

G4 forms of acetylcholinesterase and butyrylcholinesterase in normal and dystrophic mouse muscle differ in their interaction with Ricinus communis agglutinin.

作者信息

Cabezas-Herrera J, Moral-Naranjo M T, Campoy F J, Vidal C J

机构信息

Departamento de Bioquímica y Biología Molecular-A, Universidad de Murcia, Spain.

出版信息

Biochim Biophys Acta. 1994 Feb 22;1225(3):283-8. doi: 10.1016/0925-4439(94)90008-6.

Abstract

Differences in glycosylation between molecular forms of acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE) in muscle and serum of normal and dystrophic mice have been studied by means of their adsorption to immobilized lectins. Application of a two-step extraction procedure, first with saline buffer, and second with saline buffer and Triton X-100, brought into solution most of the muscle AChE and BuChE activities. The AChE activity was five times greater than that of BuChE in normal (NM) and dystrophic muscle (DM). The AChE activity in the serum of dystrophic mice was twice that measured in control animals, but the BuChE activity remained almost unchanged. Both AChE and BuChE in muscle and serum bound completely to concanavalin A (Con A) and Lens culinaris agglutinin (LCA). A12, A8 and G4 AChE, but not the light G2 and G1 AChE forms, in NM and DM were completely adsorbed to wheat germ agglutinin (WGA). Similarly, G4 BuChE, but not the G2 and G1 forms, were associated to WGA. A high proportion of G4 and G1 AChE and G4 BuChE forms in mouse serum were fixed to WGA. Asymmetric AChE in NM and DM reacted with Ricinus communis agglutinin (RCA) but the light AChE and BuChE forms in muscle and serum did not bind to the lectin. G4 AChE and G4 BuChE in NM were not recognized by RCA, but the isoforms in DM bound fully to the lectin. Serum G4 AChE from control or dystrophic mice did not react with RCA, but G4 BuChE was fixed to the lectin. Since RCA is specific for galactose, the results suggest that in dystrophic muscle galactose is incorporated early in G4 AChE and this affects the level of the functional tetramers destined for insertion in the plasma membrane.

摘要

通过将正常和营养不良小鼠肌肉及血清中的乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BuChE)分子形式吸附到固定化凝集素上,研究了它们糖基化的差异。采用两步提取程序,首先用生理盐水缓冲液,然后用生理盐水缓冲液和 Triton X - 100,使大部分肌肉 AChE 和 BuChE 活性溶解。在正常(NM)和营养不良肌肉(DM)中,AChE 活性比 BuChE 活性高五倍。营养不良小鼠血清中的 AChE 活性是对照动物的两倍,但 BuChE 活性几乎保持不变。肌肉和血清中的 AChE 和 BuChE 都能完全结合到伴刀豆球蛋白 A(Con A)和菜豆凝集素(LCA)上。NM 和 DM 中的 A12、A8 和 G4 AChE,而不是轻链 G2 和 G1 AChE 形式,能完全吸附到麦胚凝集素(WGA)上。同样,G4 BuChE,而不是 G2 和 G1 形式,与 WGA 相关。小鼠血清中高比例的 G4 和 G1 AChE 以及 G4 BuChE 形式能固定到 WGA 上。NM 和 DM 中的不对称 AChE 与蓖麻凝集素(RCA)反应,但肌肉和血清中的轻链 AChE 和 BuChE 形式不与该凝集素结合。NM 中的 G4 AChE 和 G4 BuChE 不被 RCA 识别,但 DM 中的同工型能完全结合到该凝集素上。对照或营养不良小鼠的血清 G4 AChE 不与 RCA 反应,但 G4 BuChE 能固定到该凝集素上。由于 RCA 对半乳糖具有特异性,结果表明在营养不良肌肉中,半乳糖在 G4 AChE 中早期掺入,这影响了注定插入质膜的功能性四聚体的水平。

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