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钙调蛋白(δ)在磷酸化酶激酶中的双重功能。

Dual function of calmodulin (delta) in phosphorylase kinase.

作者信息

Hessová Z, Varsányi M, Heilmeyer L M

出版信息

Eur J Biochem. 1985 Jan 2;146(1):107-15. doi: 10.1111/j.1432-1033.1985.tb08626.x.

Abstract

The Ca2+-independent activity of fast skeletal muscle phosphorylase kinase, A0, can be reversibly stimulated by heparin more than 20-fold; concomitantly the Ca2+-dependent A2 activity is abolished completely. Heparin also drastically changes the aggregation state of the enzyme; aggregated species contain significantly less delta and show an about fivefold higher A0 activity than the tetrameric form containing delta stoichiometrically. We interpret this to mean that delta has two functions in the phosphorylase kinase: an inhibitory one with respect to A0 and an activating one with respect to A2. The inhibition of A0 by Ca2+-free delta is released, i.e. A0 increases when this subunit dissociates from the holoenzyme. The maximally heparin-stimulated A0 activity, A0,hep, is enriched from a crude extract to the same degree and approximately with the same yield as the major activity, A2. The phosphorylase kinase is not eluted from DEAE-cellulose as a symmetrical bell-shaped protein peak. The peak fraction contains the activities A2 and A0,hep superimposed and yields a nearly homogeneous sedimentation boundary with an S20,w value of 25.5 S. The A0 yields a much broader eluation profile showing a distinct maximum from the A2 activity which contains slower sedimenting species of 12.1 S, some tetrameric enzyme of 22.7 S and higher aggregated material. Over the whole profile the activity ratio A2/A0 decreases about sevenfold whereas the ratio A2/A0,hep is constant on average. This shows that A0 is an intrinsic activity of phosphorylase kinase. The heparin-activated A0 activity or A0 itself in the presence of the phosphorylase phosphatase inhibitor, fluoride, can trigger a Ca2+-independent flash activation of phosphorylase in a protein-glycogen complex. Thus, A0 could be responsible for the conversion of phosphorylase b to a at 20 nM free Ca2+ in resting, hormone-stimulated, muscle.

摘要

快速骨骼肌磷酸化酶激酶的Ca2+非依赖性活性(A0)可被肝素可逆性刺激20多倍;与此同时,Ca2+依赖性的A2活性则完全丧失。肝素还会显著改变该酶的聚集状态;聚集的物种中δ含量显著减少,且与化学计量含δ的四聚体形式相比,其A0活性高出约五倍。我们认为这意味着δ在磷酸化酶激酶中具有两种功能:对A0有抑制作用,对A2有激活作用。无Ca2+的δ对A0的抑制作用被解除,即当该亚基从全酶解离时,A0活性增加。肝素最大刺激的A0活性(A0,hep)从粗提物中富集的程度与主要活性A2相同,产率也大致相同。磷酸化酶激酶不会以对称的钟形蛋白峰形式从DEAE-纤维素上洗脱。峰组分中叠加了A2和A0,hep活性,并产生了一个几乎均匀的沉降界面,S20,w值为25.5 S。A0产生的洗脱图谱要宽得多,显示出与A2活性有明显的最大值差异,其中包含沉降较慢的12.1 S物种、一些22.7 S的四聚体酶和更高聚集态的物质。在整个图谱中,A2/A0活性比降低约七倍,而A2/A0,hep比值平均恒定。这表明A0是磷酸化酶激酶的固有活性。在存在磷酸化酶磷酸酶抑制剂氟化物的情况下,肝素激活的A0活性或A0本身可在蛋白质-糖原复合物中引发磷酸化酶的Ca2+非依赖性快速激活。因此,A0可能负责在静息、激素刺激的肌肉中,在游离Ca2+浓度为20 nM时将磷酸化酶b转化为a。

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