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首页> 外文期刊>International journal of biological sciences >Hints for Metal-Preference Protein Sequence Determinants: Different Metal Binding Features of the Five Tetrahymena thermophila Metallothioneins
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Hints for Metal-Preference Protein Sequence Determinants: Different Metal Binding Features of the Five Tetrahymena thermophila Metallothioneins

机译:金属偏好蛋白序列决定因素的提示:五个四膜虫嗜热金属硫蛋白的不同金属结合特征。

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The metal binding preference of metallothioneins (MTs) groups them in two extreme subsets, the Zn/Cd- and the Cu-thioneins. Ciliates harbor the largest MT gene/protein family reported so far, including 5 paralogs that exhibit relatively low sequence similarity, excepting MTT2 and MTT4. In Tetrahymena thermophila, three MTs (MTT1, MTT3 and MTT5) were considered Cd-thioneins and two (MTT2 and MTT4) Cu-thioneins, according to gene expression inducibility and phylogenetic analysis. In this study, the metal-binding abilities of the five MTT proteins were characterized, to obtain information about the folding and stability of their cognate- and non-cognate metal complexes, and to characterize the T. thermophila MT system at protein level. Hence, the five MTTs were recombinantly synthesized as Zn2+-, Cd2+- or Cu+-complexes, which were analyzed by electrospray mass spectrometry (ESI-MS), circular dichroism (CD), and UV-vis spectrophotometry. Among the Cd-thioneins, MTT1 and MTT5 were optimal for Cd2+ coordination, yielding unique Cd17- and Cd8- complexes, respectively. When binding Zn2+, they rendered a mixture of Zn-species. Only MTT5 was capable to coordinate Cu+, although yielding heteronuclear Zn-, Cu-species or highly unstable Cu-homometallic species. MTT3 exhibited poor binding abilities both for Cd2+ and for Cu+, and although not optimally, it yielded the best result when coordinating Zn2+. The two Cu-thioneins, MTT2 and MTT4 isoforms formed homometallic Cu-complexes (major Cu20-MTT) upon synthesis in Cu-supplemented hosts. Contrarily, they were unable to fold into stable Cd-complexes, while Zn-MTT species were only recovered for MTT4 (major Zn10-MTT4). Thus, the metal binding preferences of the five T. thermophila MTs correlate well with their previous classification as Cd- and Cu-thioneins, and globally, they can be classified from Zn/Cd- to Cu-thioneins according to the gradation: MTT1>MTT5>MTT3>MTT4>MTT2. The main mechanisms underlying the evolution and specialization of the MTT metal binding preferences may have been internal tandem duplications, presence of doublet and triplet Cys patterns in Zn/Cd-thioneins, and optimization of site specific amino acid determinants (Lys for Zn/Cd- and Asn for Cu-coordination).
机译:金属硫蛋白(MTs)的金属结合偏好将它们分为两个极端子集:Zn / Cd-和Cu-硫代丝氨酸。纤毛虫具有迄今为止报道的最大的MT基因/蛋白质家族,包括5个旁系同源物,除了MTT2和MTT4外,它们具有相对较低的序列相似性。根据基因表达诱导性和系统发育分析,在嗜热四膜膜炎中,三个MT(MTT1,MTT3和MTT5)被认为是Cd-硫宁和两个(MTT2和MTT4)Cu-硫宁。在这项研究中,表征了五个MTT蛋白的金属结合能力,以获得有关它们的同源和非同源金属复合物的折叠和稳定性的信息,并在蛋白质水平上表征嗜热链球菌MT系统。因此,将五种MTTs重组合成为Zn 2 + -,Cd 2 + -或Cu + -复合物,并进行电喷雾分析。质谱(ESI-MS),圆二色性(CD)和紫外可见分光光度法。在Cd-硫蛋白中,MTT1和MTT5最适合Cd 2 + 配位,分别产生独特的Cd 17 -和Cd 8 -复合物。当结合Zn 2 + 时,它们形成了Zn物种的混合物。尽管MTT5产生异核Zn-,Cu物种或高度不稳定的Cu-均金属物种,但它能够配位Cu + 。 MTT3对Cd 2 + 和Cu + 的结合能力均较差,尽管不是最佳选择,但配位Zn 2 + 。在补充了铜的宿主中合成后,两个铜硫蛋白,MTT2和MTT4同工型形成了同金属铜配合物(主要的Cu 20 -MTT)。相反,它们无法折叠成稳定的Cd复合物,而Zn-MTT物种仅针对MTT4(主要的Zn 10 -MTT4)被回收。因此,五个嗜热四丝菌MTs的金属结合偏好与它们先前的Cd-和Cu-硫代单宁分类很好地相关,并且在全球范围内,可以根据等级将它们从Zn / Cd-分类为Cu-硫代单宁:MTT1> MTT5> MTT3> MTT4> MTT2。 MTT金属结合偏好的进化和专业化的主要机制可能是内部串联重复,Zn / Cd-硫代半胱氨酸中存在双重和三重半胱氨酸模式,以及位点特异性氨基酸决定簇的优化(对于Zn / Cd-和Asn(用于铜配位)。

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