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龙虾金属硫蛋白-1的连续质子共振归属及金属簇拓扑结构

Sequential proton resonance assignments and metal cluster topology of lobster metallothionein-1.

作者信息

Zhu Z, DeRose E F, Mullen G P, Petering D H, Shaw C F

机构信息

Department of Chemistry, University of Wisconsin-Milwaukee 53211.

出版信息

Biochemistry. 1994 Aug 2;33(30):8858-65. doi: 10.1021/bi00196a002.

Abstract

NMR studies of 111Cd6-MT 1 from lobster have been conducted to determine coordination structure of Cd-thiolate binding in the protein. Sequential proton resonance assignments were made using standard two-dimensional 1H NMR methods. Two-dimensional 1H-111Cd HMQC experiments were then carried out to determine the cadmium-cysteine connectivities in the protein. With this information, it was established that the six Cd ions exist in two different Cd3S9 clusters, each involving three bridging and six terminal thiolate ligands. Sequential cysteines in the sequence provide the sulfhydryl ligands for each cluster and do not overlap, as has been found in mammalian metallothionein. Comparison of the N-terminal, Cd3S9 B-type cluster of lobster MT 1 with the Cd3S9 cluster from rabbit MT 2 shows that while eight of the nine cysteine residues occupy homologous positions in their sequences, three of the 12 Cd-thiolate connectivities are different. Similarly, the C-terminal B-cluster of lobster MT 1 was compared with the Cd4S11 cluster of mammalian MT 2, excluding the two terminal cysteine sulfhydryl groups that convert this cluster from A- to B-type. As above, eight of nine cysteine positions are identical, yet five of 12 Cd-sulfhydryl connections are different. These differences are expanded when the role of each cysteine as bridging or terminal ligands in the clusters is considered.

摘要

已对龙虾的111Cd6-MT 1进行了核磁共振研究,以确定蛋白质中镉-硫醇盐结合的配位结构。使用标准的二维1H NMR方法进行了连续质子共振归属。然后进行二维1H-111Cd HMQC实验,以确定蛋白质中镉-半胱氨酸的连接关系。根据这些信息,确定六个镉离子存在于两个不同的Cd3S9簇中,每个簇包含三个桥连硫醇盐配体和六个末端硫醇盐配体。序列中的连续半胱氨酸为每个簇提供巯基配体,且不重叠,这与在哺乳动物金属硫蛋白中发现的情况相同。将龙虾MT 1的N端Cd3S9 B型簇与兔MT 2的Cd3S9簇进行比较,结果表明,九个半胱氨酸残基中的八个在序列中占据同源位置,但12个镉-硫醇盐连接中有三个不同。同样,将龙虾MT 1的C端B簇与哺乳动物MT 2的Cd4S11簇进行比较,不包括将该簇从A型转变为B型的两个末端半胱氨酸巯基。如上所述,九个半胱氨酸位置中的八个相同,但12个镉-巯基连接中有五个不同。当考虑每个半胱氨酸在簇中作为桥连或末端配体的作用时,这些差异会扩大。

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