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角鲨肌肉中脱支酶的纯化及性质

Purification and properties of debranching enzyme from dogfish muscle.

作者信息

Becker J U, Long T J, Fischer E H

出版信息

Biochemistry. 1977 Jan 25;16(2):291-7. doi: 10.1021/bi00621a021.

Abstract

Glycogen debranching enzyme (4-alpha-glucanotransferase amylo-1,6-glucosidase, EC 2.4.1.25 + 3.2.1.33) was purified 140-fold from dogfish muscle in a rapid, high-yield procedure that takes advantage of a strong binding of the enzyme to glycogen, and its quantitative adsorption to concanavalin A-Sepharose only when the polysaccharide is present. The final product was hrophoresis in the presence and absence of dodecyl sulfate. A molecular weight of 162,000 +/- 5000 was determined by sedimentation equilibrium analysis in good agreement with the value of 160,000 estimated by gel electrophoresis, but a low-sedimentation constant of 6.5 S suggests that the enzyme is asymmetric. The molecule appears to be made up of a single polypeptide chain with no evidence for multiple repeating sequences: it could not be dissociated into smaller fragments by dodecyl sulfate even after complete carboxymethylation; tryptic cleavage of the native protein yielded only two fragments of molecular weight 20,000 and 140,000 without loss of enzymatic activity. The amino acid composition of the enzyme is reported; no covalently bound phosphate or carbohydrate could be detected. All 32 sulfhydryl groups present were titrated with 5,5'-dithiobis(2-nitrobenzoic acid) under denaturing conditions; eight reacted readily in the native enzyme without loss of catalytic activity, while substitution of eight additional ones lowered the activity by 50%. Inactivation was greatly reduced by glycogen; the polysaccharide also influenced markedly the electrophoretic behavior of the enzyme and large filamentous aggregates were formed when solutions of both were mixed. Purified debranching enzyme releases 3 mumol of glucose min-1 mg-1 at 19 degrees C, pH 6.0, from a glycogen limit dextrin and one-tenth this amount when the native polysaccharide is used as substrate; glycogen is quantitatively degraded in the presence of phosphorylase. None of the usual sugar phosphates or nucleotide effectors of glycolysis affected enzymatic activity. No phosphorylation by either dogfish or rabbit skeletal muscle protein kinase or phosphorylase kinase could be demonstrated, nor any direct interaction with phosphorylase as measured by SH-group reactivity, enzymatic activity, or rate of phosphorylase b to a conversion. Purification of the 160,000 molecular weight M-line protein of skeletal muscle resulted in the quantitative removal of debranching enzyme, indicating that the two proteins are different.

摘要

糖原脱支酶(4-α-葡聚糖转移酶淀粉-1,6-葡萄糖苷酶,EC 2.4.1.25 + 3.2.1.33)通过一种快速、高产率的方法从角鲨肌肉中纯化了140倍,该方法利用了该酶与糖原的强烈结合,以及仅当多糖存在时它对伴刀豆球蛋白A-琼脂糖的定量吸附。最终产物在有无十二烷基硫酸钠的情况下进行电泳。通过沉降平衡分析确定分子量为162,000±5000,与凝胶电泳估计的160,000值非常一致,但6.5 S的低沉降常数表明该酶是不对称的。该分子似乎由单一多肽链组成,没有多重重复序列的证据:即使在完全羧甲基化后,它也不能被十二烷基硫酸钠解离成更小的片段;天然蛋白质的胰蛋白酶切割仅产生分子量为20,000和140,000的两个片段,且酶活性没有损失。报道了该酶的氨基酸组成;未检测到共价结合的磷酸盐或碳水化合物。在变性条件下,用5,5'-二硫代双(2-硝基苯甲酸)滴定所有32个巯基;在天然酶中有8个容易反应且催化活性没有损失,而另外8个被取代后活性降低了50%。糖原可大大减少失活;多糖也显著影响该酶的电泳行为,当两者的溶液混合时会形成大的丝状聚集体。纯化的脱支酶在19℃、pH 6.0时,从糖原极限糊精中释放3 μmol葡萄糖·min⁻¹·mg⁻¹,当使用天然多糖作为底物时释放量为该量的十分之一;在磷酸化酶存在下糖原被定量降解。糖酵解中常见的糖磷酸盐或核苷酸效应物均不影响酶活性。未证明角鲨或兔骨骼肌蛋白激酶或磷酸化酶激酶对其有磷酸化作用,也未通过巯基反应性、酶活性或磷酸化酶b向a的转化速率检测到与磷酸化酶有任何直接相互作用。骨骼肌160,000分子量M线蛋白的纯化导致脱支酶被定量去除,表明这两种蛋白质是不同的。

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