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钙调蛋白中双酪氨酸的形成:分子间交联的条件。

Dityrosine formation in calmodulin: conditions for intermolecular cross-linking.

作者信息

Malencik D A, Anderson S R

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331-7305.

出版信息

Biochemistry. 1994 Nov 15;33(45):13363-72. doi: 10.1021/bi00249a024.

Abstract

The pattern and extent of photoactivated dityrosine formation in bovine brain calmodulin are strongly affected by the presence of superoxide dismutase during UV irradiation. The addition of the enzyme to Ca(2+)-containing solutions of calmodulin results in an altered distribution of the dityrosine-containing photoproducts, from a predominance of cross-linked monomer to a mixture of products with inter- and intramolecular cross-linking. When Ca2+ is absent, significant dityrosine formation occurs only in the presence of superoxide dismutase. Fractionation of the latter reaction mixture yields a dimer of calmodulin, corresponding to a single component in sedimentation equilibrium, a smaller amount of a more highly polymerized material, and virtually no cross-linked monomer--as was found in the absence of the enzyme [Malencik, D.A., & Anderson, S.R. (1987) Biochemistry 26, 695]. Although it is homogeneous in terms of molecular weight, the purified dimer contains three electrophoretic components. Chemical characterization demonstrates intermolecular cross-linking of Tyr-99 to Tyr-138 and probably of Tyr-99 to Tyr-99. On the average, 85-90% of the dimeric calmodulin molecules bind two molecules of smooth muscle myosin light chain kinase. Catalytic activity determinations with this enzyme detect no difference between the dimer and the native protein. Fluorescence anisotropy measurements of Ca2+ binding give a Hill coefficient of < or = 0.73 and a free Ca2+ concentration of approximately 11 microM at 50% saturation. The average pKa of the dityrosine cross-link in the dimeric calmodulin is 8.5-8.6 (+/- Ca2+). Sedimentation velocity experiments show that the average Ca(2+)-liganded dimer has an elongated structure, with a relative frictional ratio approximately 30% greater than that of the native monomer. In terms of functional properties, the dimeric calmodulin preparation is more like the native protein than it is like the previously reported cross-linked monomer.

摘要

在紫外线照射过程中,超氧化物歧化酶的存在会强烈影响牛脑钙调蛋白中光活化二酪氨酸的形成模式和程度。向含Ca(2+)的钙调蛋白溶液中添加该酶会导致含二酪氨酸的光产物分布发生改变,从以交联单体为主转变为具有分子间和分子内交联的产物混合物。当不存在Ca2+时,只有在超氧化物歧化酶存在的情况下才会发生显著的二酪氨酸形成。对后一种反应混合物进行分级分离,得到一种钙调蛋白二聚体,它在沉降平衡中对应于单一成分,还有少量聚合程度更高的物质,并且几乎没有交联单体——这与在没有该酶的情况下所发现的情况相同[Malencik, D.A., & Anderson, S.R. (1987) Biochemistry 26, 695]。尽管纯化的二聚体在分子量方面是均匀的,但它包含三个电泳成分。化学表征表明Tyr-99与Tyr-138之间以及可能Tyr-99与Tyr-99之间存在分子间交联。平均而言,85 - 90%的二聚体钙调蛋白分子结合两分子平滑肌肌球蛋白轻链激酶。用该酶进行的催化活性测定未检测到二聚体与天然蛋白之间存在差异。Ca2+结合的荧光各向异性测量给出的希尔系数≤0.73,在50%饱和度时游离Ca2+浓度约为11 microM。二聚体钙调蛋白中二酪氨酸交联的平均pKa为8.5 - 8.6(±Ca2+)。沉降速度实验表明,平均而言,与Ca(2+)结合的二聚体具有细长结构,其相对摩擦比比天然单体大约30%。就功能特性而言,二聚体钙调蛋白制剂更类似于天然蛋白,而不像先前报道的交联单体。

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