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芽出 46(BEM46)蛋白的特性分析:序列、结构、系统发生和亚细胞定位分析。

Characterization of bud emergence 46 (BEM46) protein: sequence, structural, phylogenetic and subcellular localization analyses.

机构信息

Abteilung für Botanik mit Schwerpunkt Genetik und Molekularbiologie, Botanisches Institut und Botanischer Garten, Christian-Albrechts-Universität zu Kiel, Kiel, Germany.

出版信息

Biochem Biophys Res Commun. 2013 Aug 30;438(3):526-32. doi: 10.1016/j.bbrc.2013.07.103. Epub 2013 Jul 31.

Abstract

The bud emergence 46 (BEM46) protein from Neurospora crassa belongs to the α/β-hydrolase superfamily. Recently, we have reported that the BEM46 protein is localized in the perinuclear ER and also forms spots close by the plasma membrane. The protein appears to be required for cell type-specific polarity formation in N. crassa. Furthermore, initial studies suggested that the BEM46 amino acid sequence is conserved in eukaryotes and is considered to be one of the widespread conserved "known unknown" eukaryotic genes. This warrants for a comprehensive phylogenetic analysis of this superfamily to unravel origin and molecular evolution of these genes in different eukaryotes. Herein, we observe that all eukaryotes have at least a single copy of a bem46 ortholog. Upon scanning of these proteins in various genomes, we find that there are expansions leading into several paralogs in vertebrates. Usingcomparative genomic analyses, we identified insertion/deletions (indels) in the conserved domain of BEM46 protein, which allow to differentiate fungal classes such as ascomycetes from basidiomycetes. We also find that exonic indels are able to differentiate BEM46 homologs of different eukaryotic lineage. Furthermore, we unravel that BEM46 protein from N. crassa possess a novel endoplasmic-retention signal (PEKK) using GFP-fusion tagging experiments. We propose that three residues namely a serine 188S, a histidine 292H and an aspartic acid 262D are most critical residues, forming a catalytic triad in BEM46 protein from N. crassa. We carried out a comprehensive study on bem46 genes from a molecular evolution perspective with combination of functional analyses. The evolutionary history of BEM46 proteins is characterized by exonic indels in lineage specific manner.

摘要

粗糙脉孢菌的芽生 46(BEM46)蛋白属于α/β-水解酶超家族。最近,我们报道 BEM46 蛋白定位于核周内质网,并且也形成靠近质膜的斑点。该蛋白似乎是粗糙脉孢菌中细胞类型特异性极性形成所必需的。此外,初步研究表明 BEM46 氨基酸序列在真核生物中是保守的,被认为是广泛保守的“已知未知”真核基因之一。这需要对该超家族进行全面的系统发育分析,以揭示这些基因在不同真核生物中的起源和分子进化。在此,我们观察到所有真核生物都至少有一个 bem46 直系同源物的拷贝。在对这些蛋白质在不同基因组中的扫描中,我们发现脊椎动物中存在导致几个旁系同源物扩张的情况。通过比较基因组分析,我们在 BEM46 蛋白的保守结构域中发现了插入/缺失(indels),这些插入/缺失可以区分子囊菌和担子菌等真菌类群。我们还发现,外显子内的 indels 能够区分不同真核生物谱系的 BEM46 同源物。此外,我们利用 GFP 融合标记实验揭示了粗糙脉孢菌的 BEM46 蛋白具有一种新型的内质网保留信号(PEKK)。我们提出三个残基,即丝氨酸 188S、组氨酸 292H 和天冬氨酸 262D,是最关键的残基,在粗糙脉孢菌的 BEM46 蛋白中形成一个催化三联体。我们从分子进化的角度对 bem46 基因进行了全面的研究,并结合功能分析。BEM46 蛋白的进化历史具有谱系特异性的外显子内 indels 特征。

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