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正常和营养不良小鼠骨骼肌中性核糖核酸酶II抑制剂系统成分的部分纯化及特性分析

Partial purification and characterization of the components of the neutral ribonuclease II-inhibitor system of normal and distrophic mouse skeletal muscle.

作者信息

Little B W, Meyer W L

出版信息

Can J Biochem. 1981 Mar;59(3):220-31. doi: 10.1139/o81-030.

Abstract

The complexes between a proteinaceous inhibitor and neutral ribonuclease II (EC 3.127.5) purified from low ionic strength extracts of normal and dystrophic mouse muscle are essentially indistinguishable in (a) purification behavior, (b) apparent molecular weights of approximately 50 000, (c) thermal denaturation (50% loss of activity in 5 min at 73.5 degrees C), (d) isoelectric points (pH 4.8), and (e) procedures for reversible resolution into free inhibitor and free RNase II. The free RNase II species are also similar whether obtained by resolution of the purified complexes or by direct isolation of free enzyme from dystrophic muscle. All have apparent molecular weights of 11 500 compared with 13 700 for bovine pancreatic RNase A; all retain 80% of activity after 5 min at 95 degrees C. The active RNase II prepared directly from muscle, by resolution of inhibitor complexes or by organic mercurial treatment of the inhibitor complexes, all have identical pH-activity profiles in 200 mM KC1 with an optimum near pH 7.0. In comparison RNase A has an optimum pH near 7.5 and its activity decreases more rapidly as KC1 concentration is increased above 50 mM KC1. RNase II inhibitor obtained by resolution of the purified complexes or by direct isolation in the free form from normal muscle extracts has an apparent molecular weight of 42 000 and is very sensitive to heat; it loses all activity at 40 degrees C in 5 min. These studies (a) provide methods for obtaining useful amounts of the components of the neutral RNase II - inhibitor system from muscle, (b) provide the first method reported for the reversible resolution of RNase II - inhibitor complexes, (c) fail to show any distinct difference between corresponding components of the system from normal and dystrophic mice, (d) establish interesting differences between the apparently homologous enzymes, murine muscle neutral RNase II, and bovine pancreatic RNase A, and (e) provide a substantially lower molecular weight estimate for RNase II inhibitor from muscle than has been reported for the inhibitor from liver, kidney, and placenta.

摘要

从正常和营养不良小鼠肌肉的低离子强度提取物中纯化得到的蛋白质抑制剂与中性核糖核酸酶II(EC 3.127.5)之间的复合物,在以下方面基本无法区分:(a)纯化行为;(b)表观分子量约为50000;(c)热变性(在73.5℃下5分钟内活性丧失50%);(d)等电点(pH 4.8);(e)可逆解离为游离抑制剂和游离核糖核酸酶II的方法。无论是通过纯化复合物的解离还是通过从营养不良肌肉中直接分离游离酶获得的游离核糖核酸酶II种类也相似。与牛胰核糖核酸酶A的13700相比,所有的表观分子量均为11500;在95℃下5分钟后均保留80%的活性。直接从肌肉中制备的活性核糖核酸酶II,通过抑制剂复合物的解离或通过对抑制剂复合物进行有机汞处理,在200 mM KCl中均具有相同的pH-活性曲线,最适pH接近7.0。相比之下,核糖核酸酶A的最适pH接近7.5,并且随着KCl浓度增加到50 mM KCl以上,其活性下降得更快。通过纯化复合物的解离或从正常肌肉提取物中以游离形式直接分离得到的核糖核酸酶II抑制剂,表观分子量为42000,对热非常敏感;在40℃下5分钟内失去所有活性。这些研究(a)提供了从肌肉中获得有用量的中性核糖核酸酶II - 抑制剂系统组分的方法;(b)提供了报道的第一种核糖核酸酶II - 抑制剂复合物可逆解离的方法;(c)未能显示正常和营养不良小鼠系统相应组分之间的任何明显差异;(d)确立了明显同源的酶,即小鼠肌肉中性核糖核酸酶II和牛胰核糖核酸酶A之间有趣的差异;(e)提供了比报道的来自肝脏、肾脏和胎盘的抑制剂分子量低得多的肌肉核糖核酸酶II抑制剂分子量估计值。

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