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Evolutionary analysis of selective constraints identifies ameloblastin (AMBN) as a potential candidate for amelogenesis imperfecta

机译:选择性限制的进化分析确定成釉细胞蛋白(AMBN)是牙釉质发育不全的潜在候选者

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Background Ameloblastin (AMBN) is a phosphorylated, proline/glutamine-rich protein secreted during enamel formation. Previous studies have revealed that this enamel matrix protein was present early in vertebrate evolution and certainly plays important roles during enamel formation although its precise functions remain unclear. We performed evolutionary analyses of AMBN in order to (i) identify residues and motifs important for the protein function, (ii) predict mutations responsible for genetic diseases, and (iii) understand its molecular evolution in mammals. Results In silico searches retrieved 56 complete sequences in public databases that were aligned and analyzed computationally. We showed that AMBN is globally evolving under moderate purifying selection in mammals and contains a strong phylogenetic signal. In addition, our analyses revealed codons evolving under significant positive selection. Evidence for positive selection acting on AMBN was observed in catarrhine primates?and the aye-aye. We also found that (i) an additional translation initiation site was recruited in the ancestral placental AMBN, (ii) a short exon was duplicated several times in various species including catarrhine primates, and (iii) several polyadenylation sites are present. Conclusions AMBN possesses many positions, which have been subjected to strong selective pressure for 200 million years. These positions correspond to several cleavage sites and hydroxylated, O-glycosylated, and phosphorylated residues. We predict that these conserved positions would be potentially responsible for enamel disorder if substituted. Some motifs that were previously identified as potentially important functionally were confirmed, and we found two, highly conserved, new motifs, the function of which should be tested in the near future. This study illustrates the power of evolutionary analyses for characterizing the functional constraints acting on proteins with yet uncharacterized structure.
机译:背景成釉细胞蛋白(AMBN)是在牙釉质形成过程中分泌的一种磷酸化的富含脯氨酸/谷氨酰胺的蛋白质。先前的研究表明,这种釉质基质蛋白存在于脊椎动物进化的早期,尽管其确切功能尚不清楚,但在釉质形成过程中当然起着重要作用。我们进行了AMBN的进化分析,以(i)确定对蛋白质功能重要的残基和基序,(ii)预测导致遗传疾病的突变,以及(iii)了解其在哺乳动物中的分子进化。结果在计算机搜索中,对公共数据库中的56个完整序列进行了比对并进行了计算分析。我们显示AMBN在哺乳动物的适度纯化选择下正在全球发展,并且包含强大的系统发生信号。另外,我们的分析表明密码子在显着的正选择下进化。在卡他性灵长类动物和大麦中观察到有积极选择作用于AMBN的证据。我们还发现(i)在祖先的胎盘AMBN中募集了一个额外的翻译起始位点,(ii)在包括卡他汀灵长类动物在内的各种物种中,一个短的外显子重复了几次,并且(iii)存在多个聚腺苷酸化位点。结论AMBN拥有许多职位,承受着2亿年的强烈选择压力。这些位置对应于几个切割位点和羟基化,O-糖基化和磷酸化的残基。我们预测,如果替换这些保守位置,可能会导致牙釉质异常。确认了一些先前被认为在功能上潜在重要的图案,我们发现了两个高度保守的新图案,应在不久的将来对其功能进行测试。这项研究说明了进化分析的力量,这些特征用于表征作用于结构尚未表征的蛋白质的功能限制。

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