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金属特异性在一类后生动物金属硫蛋白家族中的形成机制:软体动物金属硫蛋白的进化分化。

Shaping mechanisms of metal specificity in a family of metazoan metallothioneins: evolutionary differentiation of mollusc metallothioneins.

机构信息

Departamento Química, Faculty Ciències, Universitat Autònoma de Barcelona, Spain.

出版信息

BMC Biol. 2011 Jan 21;9:4. doi: 10.1186/1741-7007-9-4.

Abstract

BACKGROUND

The degree of metal binding specificity in metalloproteins such as metallothioneins (MTs) can be crucial for their functional accuracy. Unlike most other animal species, pulmonate molluscs possess homometallic MT isoforms loaded with Cu(+) or Cd(2+). They have, so far, been obtained as native metal-MT complexes from snail tissues, where they are involved in the metabolism of the metal ion species bound to the respective isoform. However, it has not as yet been discerned if their specific metal occupation is the result of a rigid control of metal availability, or isoform expression programming in the hosting tissues or of structural differences of the respective peptides determining the coordinative options for the different metal ions. In this study, the Roman snail (Helix pomatia) Cu-loaded and Cd-loaded isoforms (HpCuMT and HpCdMT) were used as model molecules in order to elucidate the biochemical and evolutionary mechanisms permitting pulmonate MTs to achieve specificity for their cognate metal ion.

RESULTS

HpCuMT and HpCdMT were recombinantly synthesized in the presence of Cd(2+), Zn(2+) or Cu(2+) and corresponding metal complexes analysed by electrospray mass spectrometry and circular dichroism (CD) and ultra violet-visible (UV-Vis) spectrophotometry. Both MT isoforms were only able to form unique, homometallic and stable complexes (Cd(6)-HpCdMT and Cu(12)-HpCuMT) with their cognate metal ions. Yeast complementation assays demonstrated that the two isoforms assumed metal-specific functions, in agreement with their binding preferences, in heterologous eukaryotic environments. In the snail organism, the functional metal specificity of HpCdMT and HpCuMT was contributed by metal-specific transcription programming and cell-specific expression. Sequence elucidation and phylogenetic analysis of MT isoforms from a number of snail species revealed that they possess an unspecific and two metal-specific MT isoforms, whose metal specificity was achieved exclusively by evolutionary modulation of non-cysteine amino acid positions.

CONCLUSION

The Roman snail HpCdMT and HpCuMT isoforms can thus be regarded as prototypes of isoform families that evolved genuine metal-specificity within pulmonate molluscs. Diversification into these isoforms may have been initiated by gene duplication, followed by speciation and selection towards opposite needs for protecting copper-dominated metabolic pathways from nonessential cadmium. The mechanisms enabling these proteins to be metal-specific could also be relevant for other metalloproteins.

摘要

背景

金属结合特异性的程度在金属蛋白,如金属硫蛋白(MTs),可以是其功能的准确性至关重要。与大多数其他动物物种不同,腹足纲软体动物具有同型金属 MT 同工型与 Cu(+)或 Cd(2+)加载。他们迄今为止,从蜗牛组织中获得了天然金属-MT 复合物,在那里它们参与了各自同工型结合的金属离子物种的代谢。然而,目前尚不清楚它们的特定金属占据是否是金属可用性的严格控制的结果,或者是宿主组织中同工型表达编程的结果,或者是决定不同金属离子配位选择的各自肽结构差异的结果。在这项研究中,使用罗马蜗牛(Helix pomatia)Cu 负载和 Cd 负载同工型(HpCuMT 和 HpCdMT)作为模型分子,以阐明允许腹足纲 MT 对其同源金属离子实现特异性的生化和进化机制。

结果

在存在 Cd(2+)、Zn(2+)或 Cu(2+)的情况下,重组合成了 HpCuMT 和 HpCdMT,并通过电喷雾质谱法和圆二色性(CD)和紫外可见(UV-Vis)分光光度法分析相应的金属络合物。两种 MT 同工型仅能够与其同源金属离子形成独特的、同型的和稳定的络合物(Cd(6)-HpCdMT 和 Cu(12)-HpCuMT)。酵母互补测定表明,两种同工型在异源真核环境中承担了与其结合偏好一致的金属特异性功能。在蜗牛体内,HpCdMT 和 HpCuMT 的功能金属特异性是由金属特异性转录编程和细胞特异性表达贡献的。从许多蜗牛物种中分离的 MT 同工型的序列阐明和系统发育分析表明,它们具有非特异性和两种金属特异性 MT 同工型,其金属特异性仅通过非半胱氨酸氨基酸位置的进化调节来实现。

结论

因此,罗马蜗牛 HpCdMT 和 HpCuMT 同工型可以被视为在腹足纲软体动物中进化出真正金属特异性的同工型家族的原型。同工型的多样化可能是由基因复制引发的,随后是物种形成和选择,以满足从非必需镉保护铜主导的代谢途径的相反需求。使这些蛋白质具有金属特异性的机制也可能与其他金属蛋白有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/987e/3033865/ea2439fa99bd/1741-7007-9-4-1.jpg

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