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来自鸡砂囊的肌球蛋白和重酶解肌球蛋白的构象变化与磷酸化相关。

Conformational changes in myosin and heavy meromyosin from chicken gizzard associated with phosphorylation.

作者信息

Nag S, Suzuki H, Sosinski J, Seidel J C

机构信息

Department of Muscle Research, Boston Biomedical Research Institute, MA 02114.

出版信息

Prog Clin Biol Res. 1987;245:91-108.

PMID:2960980
Abstract

Heavy meromyosin (HMM) undergoes a conformational transition between a rapidly and a slowly sedimenting form, during which it sediments as a single peak in the ultracentrifuge with sedimentation coefficients between 7.5 and 9S. Changes in sedimentation velocity and ATPase activity produced by changes in ionic strength, phosphorylation of HMM or addition of MgATP are interpreted in terms of equilibria between the rapidly and slowly sedimenting forms, the observed values of activity and sedimentation velocity being determined by the fraction of HMM in each form. Phosphorylation of the 20 kDa light chain or raising the ionic strength decrease the sedimentation velocity, by decreasing the fraction of HMM in the rapidly sedimenting form, while addition of ATP increases sedimentation velocity upon forming a 9S HMM-ADP-Pi complex. Electron microscopic studies support this interpretation showing the presence of two distinct conformations of HMM--extended and flexed, which correspond to the 7.5S and 9S forms, respectively (Suzuki et al., 1985). In samples prepared at high ionic strengths, the heads extend away from the tail in a more or less random orientation, while at low ionic strength, the molecule is flexed at the head-tail junction assuming a more compact structure, that appears to account for its more rapid sedimentation rate. The degradation rates of the heavy chain and the 20 kDa light chain of HMM on digestion with papain indicate the presence of three forms of HMM differing in their susceptibility to papain. At 25 mM NaCl, HMM is rapidly digested in the absence of ATP, while addition of ATP decreases digestibility by a factor of ten, upon formation of a complex of HMM with the products of ATP hydrolysis. Above 0.4 M NaCl, HMM is degraded at an intermediate rate that is not affected by ATP. When the ionic strength is varied, the rate of disappearance of the heavy chain depends linearly on the sedimentation velocity in both the phosphorylated and dephosphorylated states, indicating that the rate of proteolysis is determined primarily by the fraction of HMM in the rapidly and slowly sedimenting forms. The same pattern is seen in the disappearance of the 20 kDa light chain of dephosphorylated HMM on cleavage at a site 4 kDa from the N-terminus, indicating that the cleavage of the light chain also depends on the fraction of HMM in the rapidly and slowly sedimenting forms.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

重酶解肌球蛋白(HMM)在快速沉降和缓慢沉降形式之间经历构象转变,在此过程中,它在超速离心机中以单一峰沉降,沉降系数在7.5至9S之间。离子强度变化、HMM磷酸化或添加MgATP所产生的沉降速度和ATP酶活性的变化,根据快速沉降和缓慢沉降形式之间的平衡来解释,观察到的活性和沉降速度值由每种形式的HMM比例决定。20 kDa轻链的磷酸化或提高离子强度会降低沉降速度,这是通过降低快速沉降形式的HMM比例实现的,而添加ATP在形成9S HMM-ADP-Pi复合物时会增加沉降速度。电子显微镜研究支持这一解释,显示HMM存在两种不同的构象——伸展型和弯曲型,分别对应7.5S和9S形式(铃木等人,1985年)。在高离子强度下制备的样品中,头部以或多或少随机的方向从尾部伸出,而在低离子强度下,分子在头尾连接处弯曲,呈现出更紧凑的结构,这似乎解释了其更快的沉降速率。用木瓜蛋白酶消化时,HMM重链和20 kDa轻链的降解速率表明存在三种对木瓜蛋白酶敏感性不同的HMM形式。在25 mM NaCl下,HMM在没有ATP时迅速被消化,而添加ATP会在形成HMM与ATP水解产物的复合物时将消化率降低10倍。在高于0.4 M NaCl时,HMM以中间速率降解,且不受ATP影响。当离子强度变化时,重链的消失速率在磷酸化和去磷酸化状态下均与沉降速度呈线性相关,表明蛋白水解速率主要由快速沉降和缓慢沉降形式的HMM比例决定。在去磷酸化HMM的20 kDa轻链在距N端4 kDa处的位点裂解时,也观察到相同的模式,表明轻链的裂解也取决于快速沉降和缓慢沉降形式的HMM比例。(摘要截断于400字)

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