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重组海胆金属硫蛋白的金属硫醇盐簇结构域的分离与表征

Separation and characterization of the metal-thiolate-cluster domains of recombinant sea urchin metallothionein.

作者信息

Wang Y, Hess D, Hunziker P E, Kägi J H

机构信息

Biochemisches Institut, Universität Zürich, Switzerland.

出版信息

Eur J Biochem. 1996 Nov 1;241(3):835-9. doi: 10.1111/j.1432-1033.1996.00835.x.

Abstract

Partial metal depletion and 113Cd-NMR studies have suggested that the recombinant Cd-containing metallothionein of the sea urchin Strongylocentrotus purpuratus (Cd7-MTA) binds its metal ions in a four-metal (Cd4Cys11) and a three-metal (Cd3Cys9) cluster associated with the N-terminal and C-terminal halves of the protein, respectively [Wang, Y., Mackay, E.A., Zerbe, O., Hess, D., Hunziker, P.E., Vasak, M. & Kägi, J.H.R. (1995) Biochemistry 34,7460-7467]. This partitioning has now been confirmed by bisecting native Cd7-MTA with subtilisin into products bearing only a single metal-thiolate cluster. Their separation by reverse-phase HPLC and on-line electrospray mass spectrometry in combination with sequence analysis revealed selective cleavage of the protein into a set of N-terminal polypeptides containing 37-39 residues with four Cd ions and a set of C-terminal polypeptides containing 24 and 25 residues with three Cd ions. Thus, sea urchin MTA like its mammalian counterparts is made up of two separate cluster-harboring domains. The fragmentation pattern indicated that the sites of cleavage are located in the peptide loop interspaced between the first two metal-bound cysteine residues of the C-terminal domain. Accordingly, with cleavage, one of the putative nine thiolate ligands of the three-metal cluster was lost to the N-terminal fragment. The coordinational consequences of this repartition were reflected in massive chiroptical changes accompanying the cleavage process. While the liberated N-terminal domain retained the CD profile of the four-metal cluster in the parent protein and thereby indicated preservation of its structure, the CD features attributable to the intact three-metal cluster were largely lost on cleavage. The vanished features bear strong resemblance to the large biphasic ellipticity signal at 250 nm which dominates the CD spectrum of native Cd7-MTA, and allow us thus to attribute this signal to excitonic coupling interactions of Cd-thiolate chromophores in the three-metal cluster.

摘要

部分金属缺失和113Cd-NMR研究表明,海胆紫球海胆(Strongylocentrotus purpuratus)的重组含镉金属硫蛋白(Cd7-MTA)将其金属离子结合在分别与蛋白质N端和C端一半相关的四金属(Cd4Cys11)和三金属(Cd3Cys9)簇中[Wang, Y., Mackay, E.A., Zerbe, O., Hess, D., Hunziker, P.E., Vasak, M. & Kägi, J.H.R. (1995) Biochemistry 34,7460-7467]。现在,通过用枯草杆菌蛋白酶将天然Cd7-MTA切成仅带有单个金属硫醇盐簇的产物,证实了这种分配。通过反相HPLC和在线电喷雾质谱结合序列分析对它们进行分离,结果显示该蛋白质被选择性切割成一组含有37 - 39个残基和四个镉离子的N端多肽以及一组含有24和25个残基和三个镉离子的C端多肽。因此,海胆MTA与其哺乳动物对应物一样,由两个独立的含簇结构域组成。断裂模式表明,切割位点位于C端结构域前两个与金属结合的半胱氨酸残基之间的肽环中。相应地,切割后,三金属簇中假定的九个硫醇盐配体之一丢失到了N端片段中。这种重新分配的配位结果反映在切割过程中伴随的大量手性光学变化中。虽然释放的N端结构域保留了亲本蛋白质中四金属簇的CD谱,从而表明其结构得以保留,但完整三金属簇的CD特征在切割后基本丧失。消失的特征与在250 nm处占主导地位的天然Cd7-MTA的CD光谱的大双相椭圆率信号非常相似,因此使我们能够将该信号归因于三金属簇中镉硫醇盐发色团的激子耦合相互作用。

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