胍诱导线粒体 F1-ATP 酶解离。

The Italian journal of biochemistry Pub Date : 2004-12-01
Stavros Papageorgiou, Giancarlo Solaini
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引用次数: 0

摘要

研究了盐酸胍对线粒体F1-ATP酶的ATP酶活性、凝胶过滤、浊度和荧光发射强度的影响。从牛心脏线粒体纯化的 F1 在低变性剂浓度下缓慢失活,失活与 delta 和 epsilon 亚基解离有关。与此同时,还观察到浑浊现象的出现。经 SDS-PAGE 分析,这是由于形成了 alpha3beta3gamma 非共价聚集体。将 F1 复合物短时间置于高浓度盐酸胍(0.8-3 M)中,再次诱导 deltaepsilon 作为异二聚体解离,并形成无活性的 alpha3beta3gamma 亚复合物。这种亚复合物最终逐渐解离成单亚基,这是因为部分解折引起的,这一点可以通过蛋白质内在荧光发射的变化得到证明。我们的研究结果表明,delta 和 epsilon 亚基与 alpha3beta3gamma 结合松散,在决定离体线粒体 F1-ATP 酶结构稳定性方面起着重要作用。
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Guanidine-induced dissociation of mitochondrial F1-ATPase.

The effect of guanidine hydrochloride on ATPase activity, gel filtration, turbidity, and the fluorescence emission intensity of mitochondrial F1-ATPase was examined. Purified F1 from bovine heart mitochondria was slowly inactivated at low denaturant concentration, and inactivation was associated with delta and epsilon subunit dissociation. delta and epsilon subunits were bound together to form a stable and soluble heterodimer. In parallel, appearance of turbidity was observed. This was caused by the formation of alpha3beta3gamma non-covalent aggregates, as analyzed by SDS-PAGE. Short periods of exposition of the F1 complex to high concentrations of guanidine hydrochloride (0.8-3 M) again induced deltaepsilon dissociation as a heterodimer and the formation of an inactive alpha3beta3gamma subcomplex. This eventually dissociated progressively into single subunits caused by partial unfolding, as evidenced through changes of the protein intrinsic fluorescence emission. Our results suggest that the delta and epsilon subunits are loosely bound to alpha3beta3gamma , and play an important role in determining structural stability to isolated mitochondrial F1-ATPase.

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