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Primary- and secondary-structural analysis of a unique prokaryotic metallothionein from a Synechococcus sp. cyanobacterium

机译:从Syechococcus sp。一个独特的原核金属硫蛋白的一级和二级结构分析。蓝细菌

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pBiochemical and physiological studies of Synechococcus cyanobacteria have indicated the presence of a low-Mr heavy-metal-binding protein with marked similarity to eukaryotic metallothioneins (MTs). We report here the characterization of a Synechococcus prokaryotic MT isolated by gel-permeation and reverse-phase chromatography. The large number of variants of this molecule found during chromatographic separation could not be attributed to the presence of major isoproteins as assessed by amino acid analysis and amino acid sequencing of isoforms. Two of the latter were shown to have identical primary structures that differed substantially from the well-described eukaryotic MTs. In addition to six long-chain aliphatic residues, two aromatic residues were found adjacent to one another near the centre of the molecule, making this the most hydrophobic MT to be described. Other unusual features included a pair of histidine residues located in repeating Gly-His-Thr-Gly sequences near the C-terminus and a complete lack of association of hydroxylated residues with cysteine residues, as is commonly found in eukaryotes. Similarly, aside from a single lysine residue, no basic amino acid residues were found adjacent to cysteine residues in the sequence. Most importantly, sequence alignment analyses with mammalian, invertebrate and fungal MT sequences showed no statistically significant homology aside from the presence of Cys-Xaa-Cys structures common to all MTs. On the other hand, like other MTs, the prokaryotic molecule appears to be free of alpha-helical structure but has a considerable amount of beta-structure, as predicted by both c.d. measurements and the Chou & Fasman empirical relations. Considered together, these data suggested that some similarity between the metal-thiolate clusters of the prokaryote and eukaryote MTs may exist./p
机译:>蓝藻球菌的生化和生理研究表明,存在一种与真核金属硫蛋白(MTs)具有明显相似性的低Mr重金属结合蛋白。我们在这里报告通过凝胶渗透和反相色谱分离的原核球菌的特征。如通过氨基酸分析和同工型的氨基酸测序所评估的,在色谱分离过程中发现的该分子的大量变体不能归因于主要同工蛋白的存在。后者中的两个显示出具有相同的一级结构,该一级结构与充分描述的真核MT显着不同。除了六个长链脂族残基外,在分子中心附近还发现了两个彼此相邻的芳族残基,这使其成为最疏水的MT。其他不寻常的特征包括位于C末端附近重复Gly-His-Thr-Gly序列中的一对组氨酸残基,以及在真核生物中常见的完全缺乏羟基化残基与半胱氨酸残基的缔合。类似地,除了单个赖氨酸残基外,在序列中没有发现与半胱氨酸残基相邻的碱性氨基酸残基。最重要的是,用哺乳动物,无脊椎动物和真菌的MT序列进行的序列比对分析显示,除了存在所有MT共有的Cys-Xaa-Cys结构外,没有统计上的显着同源性。另一方面,正如其他c.d.预测的那样,与其他MT一样,原核生物分子似乎没有α-螺旋结构,但具有相当数量的β-结构。测量和周法斯曼经验关系。综合考虑,这些数据表明原核生物和真核生物MT的金属硫醇盐簇之间可能存在某些相似性。

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