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一种新型含镉和磷酸盐的单体金属硫蛋白的形成及光谱表征

Formation and spectroscopic characterization of a novel monomeric cadmium- and phosphate-containing form of metallothionein.

作者信息

Palumaa P, Zerbe O, Vasák M

机构信息

Biochemisches Institut, Universität Zürich, Switzerland.

出版信息

Biochemistry. 1993 Mar 23;32(11):2874-9. doi: 10.1021/bi00062a019.

Abstract

The occurrence of a new monomeric cadmium and phosphate containing metallothionein (MT) form, i.e., Cd13-(Pi)2-MT, is reported. The preferential formation of this MT form from Cd7-MT has been shown to occur in the presence of phosphate and free cadmium at low protein concentration and elevated temperatures. This form displays in gel filtration an apparent molecular weight of 8,900 as opposed to 12,000 for Cd7-MT, suggesting the presence of a more globular structure. This new MT form was characterized by electronic absorption, by circular dichroism (CD), and by 1H, 31P, and 113Cd NMR spectroscopy. The Cd13-(Pi)2-MT form displays at least 24 113Cd signals between 240 and 520 ppm indicating (i) the absence of the original cluster structure of Cd7-MT, (ii) the participation of oxygen and/or nitrogen ligands besides thiolates in metal coordination, and (iii) the presence of more than one stable MT form in the sample. From homonuclear 113Cd COSY and CD studies, evidence for the existence of a cluster structure was obtained. It has been demonstrated that in the Cd13-(Pi)2-MT form two phosphate molecules are bound noncovalently and shown that a very slow exchange with [32P]phosphate in solution (half-life of approximately 56 h) takes place. In the 31P NMR studies, three 31P signals from protein-bound phosphate between 3.5 and 6 ppm have been observed. The 31P signal at 5.7 ppm displayed a heteronuclear 31P-113Cd coupling (J2 = 56 Hz) which provides evidence for direct metal-phosphate coordination. The structural and NMR features of this new MT form are discussed.

摘要

据报道,出现了一种新的含镉和磷酸盐的单体金属硫蛋白(MT)形式,即Cd13-(Pi)2-MT。已表明,在低蛋白浓度和高温下,存在磷酸盐和游离镉时,这种MT形式会优先从Cd7-MT形成。与Cd7-MT的表观分子量12,000相比,这种形式在凝胶过滤中显示的表观分子量为8,900,表明存在更球状的结构。这种新的MT形式通过电子吸收、圆二色性(CD)以及1H、31P和113Cd核磁共振光谱进行了表征。Cd13-(Pi)2-MT形式在240至520 ppm之间显示至少24个113Cd信号,这表明(i)Cd7-MT的原始簇结构不存在,(ii)除硫醇盐外,氧和/或氮配体参与金属配位,(iii)样品中存在不止一种稳定的MT形式。通过同核113Cd COSY和CD研究,获得了簇结构存在的证据。已证明,在Cd13-(Pi)2-MT形式中,两个磷酸盐分子非共价结合,并表明与溶液中的[32P]磷酸盐发生非常缓慢的交换(半衰期约为56小时)。在31P核磁共振研究中,观察到来自蛋白质结合磷酸盐的三个31P信号,在3.5至6 ppm之间。5.7 ppm处的31P信号显示出异核31P-113Cd耦合(J2 = 56 Hz),这为金属-磷酸盐直接配位提供了证据。讨论了这种新的MT形式的结构和核磁共振特征。

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