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肌球蛋白亚片段1、亚片段2和重酶解肌球蛋白解折叠的差示扫描量热法

Differential scanning calorimetry of the unfolding of myosin subfragment 1, subfragment 2, and heavy meromyosin.

作者信息

Shriver J W, Kamath U

机构信息

Department of Medical Biochemistry, School of Medicine, Southern Illinois University, Carbondale 62901.

出版信息

Biochemistry. 1990 Mar 13;29(10):2556-64. doi: 10.1021/bi00462a018.

DOI:10.1021/bi00462a018
PMID:2185830
Abstract

The thermal unfolding of rabbit skeletal heavy meromyosin (HMM), myosin subfragment 1, and subfragment 2 has been studied by differential scanning calorimetry (DSC). Two distinct endotherms are observed in the DSC scan of heavy meromyosin. The first endotherm, with a Tm of 41 degrees C at pH 7.9 in 0.1 M KCl, is assigned to the unfolding of the subfragment 2 domain of HMM based on scans of isolated subfragment 2. The unfolding of the subfragment 2 domain is reversible both in the isolated form and in HMM. The unfolding of subfragment 2 in HMM can be fit as a single two-state transition with a delta Hvh and delta Hcal of 161 kcal/mol, indicating that subfragment 2 exists as a single domain in HMM. The unfolding of subfragment 2 is characterized by an extraordinarily large delta Cp of approximately 30,000 cal/(deg.mol). In the presence of nucleotides, the high-temperature HMM endotherm with a Tm of 48 degrees C shifts to higher temperature, indicating that this peak corresponds to the unfolding of the subfragment 1 domain. This assignment has been confirmed by comparison with isolated subfragment 1. The stabilizing effect of AMPPNP was significantly greater than that of ADP. The vanadate-trapped ADP species was slightly more stable than M.AMPPNP with a Tm at 58 degrees C. The unfolding of subfragment 1, both in the isolated form and in HMM, was irreversible. Only a single endotherm was noted in the DSC scans of the subfragment 1 domain of HMM and in freshly prepared subfragment 1 complexes.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

已通过差示扫描量热法(DSC)研究了兔骨骼肌重酶解肌球蛋白(HMM)、肌球蛋白亚片段1和亚片段2的热变性。在重酶解肌球蛋白的DSC扫描中观察到两个不同的吸热峰。第一个吸热峰,在0.1M KCl中pH 7.9时Tm为41℃,根据分离的亚片段2的扫描结果,被归因于HMM中亚片段2结构域的解折叠。亚片段2结构域的解折叠在分离形式和HMM中都是可逆的。HMM中亚片段2的解折叠可拟合为单一的两态转变,ΔHvh和ΔHcal为161千卡/摩尔,表明亚片段2在HMM中以单一结构域形式存在。亚片段2的解折叠特征是具有约30,000卡/(℃·摩尔)的异常大的ΔCp。在核苷酸存在下,Tm为48℃的高温HMM吸热峰向更高温度移动,表明该峰对应于亚片段1结构域的解折叠。通过与分离的亚片段1比较,这一归属得到了证实。AMPPNP的稳定作用明显大于ADP。钒酸盐捕获的ADP物种比M.AMPPNP稍稳定,Tm为58℃。亚片段1的解折叠,无论是分离形式还是在HMM中,都是不可逆的。在HMM的亚片段1结构域的DSC扫描和新制备的亚片段1复合物中仅观察到一个吸热峰。(摘要截短于250字)

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