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绿色植物中的 BBX 蛋白:对其进化、结构、特征和功能多样化的深入了解。

BBX proteins in green plants: insights into their evolution, structure, feature and functional diversification.

机构信息

IFEVA, Facultad de Agronomía, Universidad de Buenos Aires y Consejo Nacional de Investigaciones Científicas y Técnicas, Av. San Martín 4453, C1417DSE, Ciudad de Buenos Aires, Argentina.

出版信息

Gene. 2013 Nov 15;531(1):44-52. doi: 10.1016/j.gene.2013.08.037. Epub 2013 Aug 27.

Abstract

The B-box domain is conserved in a large number of proteins involved in cell growth control, differentiation and transcriptional regulation among animal and plant species. In Arabidopsis thaliana, some works have found that B-box proteins (BBX) play central developmental functions in flowering, light and abiotic stress signaling. Despite the functional importance of this protein family, evolutionary and structural relationships of BBX proteins have not been extensively investigated in the plant kingdom. Using a phylogenetic approach, we conducted a comprehensive evolutionary analysis of the BBX protein family in twelve plant species (four green algae, one moss, one lycophyte, three monocots and three dicots). The analysis classified 214 BBX proteins into five structure groups, which evolved independently at early stages of green plant evolution. We showed that the B-box consensus sequences of each structure groups retained a common and conserved domain topology. Furthermore, we identified seven novel motifs specific to each structure group and a valine-proline (VP) pair conserved at the C-terminus domain in some BBX proteins suggesting that they are required for protein-protein interactions. As it has been documented in mammalian systems, we also found monopartite and bipartite amino acid sequences at the C-terminus domain that could function as nuclear localization signals (NLSs). The five BBX structure groups evolved constrained by the conservation of amino acid sequences in the two B-boxes, but radiating variation into NLSs and novel motifs of each structural group. We suggest that these features are the functional basis for the BBX protein diversity in green plants.

摘要

B-box 结构域在涉及动植物细胞生长调控、分化和转录调控的大量蛋白质中是保守的。在拟南芥中,一些研究发现 B-box 蛋白(BBX)在开花、光和非生物胁迫信号转导中发挥着核心发育功能。尽管该蛋白家族具有重要的功能,但在植物界中,BBX 蛋白的进化和结构关系尚未得到广泛研究。我们采用系统发育方法,对 12 种植物(4 种绿藻、1 种苔藓、1 种石松、3 种单子叶植物和 3 种双子叶植物)的 BBX 蛋白家族进行了全面的进化分析。该分析将 214 种 BBX 蛋白分为 5 个结构群,这些结构群在绿藻进化的早期阶段独立进化。我们表明,每个结构群的 B-box 保守序列保留了一个共同且保守的结构域拓扑结构。此外,我们鉴定了每个结构群特有的 7 个新基序和位于一些 BBX 蛋白 C 端结构域的保守缬氨酸-脯氨酸(VP)对,提示它们是蛋白质-蛋白质相互作用所必需的。正如在哺乳动物系统中所记录的那样,我们还在 C 端结构域中发现了单肽和双肽序列,它们可能作为核定位信号(NLS)。五个 BBX 结构群的进化受到两个 B-box 中氨基酸序列保守性的限制,但在 NLS 和每个结构群的新基序中辐射出变异。我们认为这些特征是 BBX 蛋白在绿色植物中多样性的功能基础。

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