Structural Diversity and Distribution of Nuclear Matrix Constituent Protein Class Nuclear Lamina Proteins in Streptophytic Algae.

IF 3.2 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Brendan S Kosztyo, Eric J Richards
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引用次数: 0

Abstract

Nuclear matrix constituent proteins in plants function like animal lamins, providing the structural foundation of the nuclear lamina and regulating nuclear organization and morphology. Although they are well characterized in angiosperms, the presence and structure of nuclear matrix constituent proteins in more distantly related species, such as streptophytic algae, are relatively unknown. The rapid evolution of nuclear matrix constituent proteins throughout the plant lineage has caused a divergence in protein sequence that makes similarity-based searches less effective. Structural features are more likely to be conserved compared to primary amino acid sequence; therefore, we developed a filtration protocol to search for diverged nuclear matrix constituent proteins based on four physical characteristics: intrinsically disordered content, isoelectric point, number of amino acids, and the presence of a central coiled-coil domain. By setting parameters to recognize the properties of bona fide nuclear matrix constituent protein proteins in angiosperms, we filtered eight complete proteomes from streptophytic algae species and identified strong nuclear matrix constituent protein candidates in six taxa in the Classes Zygnematophyceae, Charophyceae, and Klebsormidiophyceae. Through analysis of these proteins, we observed structural variance in domain size between nuclear matrix constituent proteins in algae and land plants, as well as a single block of amino acid conservation. Our analysis indicates that nuclear matrix constituent proteins are absent in the Mesostigmatophyceae. The presence versus absence of nuclear matrix constituent protein proteins does not correlate with the distribution of different forms of mitosis (e.g. closed/semi-closed/open) but does correspond to the transition from unicellularity to multicellularity in the streptophytic algae, suggesting that a nuclear matrix constituent protein-based nucleoskeleton plays important roles in supporting cell-to-cell interactions.

链藻中 NMCP 级核薄层蛋白的结构多样性和分布。
植物中的核基质成分蛋白(NMCPs)与动物的片层蛋白功能类似,为核薄层提供结构基础,并调节核组织和形态。虽然被子植物中的 NMCPs 已被很好地描述,但在链格藻等亲缘关系较远的物种中,NMCPs 的存在和结构却相对未知。NMCPs 在整个植物谱系中的快速进化造成了蛋白质序列的差异,这使得基于相似性的搜索变得不那么有效。与主要氨基酸序列相比,结构特征更有可能得到保守;因此,我们开发了一种过滤方案,根据以下四个物理特征来搜索分化的 NMCPs:内在无序含量、等电点、氨基酸数量以及是否存在中央盘绕结构域。通过设置参数来识别被子植物中真正的 NMCP 蛋白的特性,我们筛选了来自链格藻的 8 个完整蛋白质组,并在 Zygnematophyceae、Charophyceae 和 Klebsormidophyceae 类中的 6 个类群中发现了强大的 NMCP 候选蛋白。通过对这些蛋白质的分析,我们观察到藻类和陆地植物中的 NMCPs 在结构域大小上存在差异,并且存在单一的氨基酸保守区块。我们的分析表明,中柱叶藻中不存在 NMCPs。NMCP蛋白的存在与否与有丝分裂的不同形式(如闭合/半闭合/开放)的分布并不相关,但确实与链格藻从单细胞性向多细胞性的过渡相对应,这表明基于NMCP的核骨架在支持细胞间相互作用方面发挥着重要作用。
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来源期刊
Genome Biology and Evolution
Genome Biology and Evolution EVOLUTIONARY BIOLOGY-GENETICS & HEREDITY
CiteScore
5.80
自引率
6.10%
发文量
169
审稿时长
1 months
期刊介绍: About the journal Genome Biology and Evolution (GBE) publishes leading original research at the interface between evolutionary biology and genomics. Papers considered for publication report novel evolutionary findings that concern natural genome diversity, population genomics, the structure, function, organisation and expression of genomes, comparative genomics, proteomics, and environmental genomic interactions. Major evolutionary insights from the fields of computational biology, structural biology, developmental biology, and cell biology are also considered, as are theoretical advances in the field of genome evolution. GBE’s scope embraces genome-wide evolutionary investigations at all taxonomic levels and for all forms of life — within populations or across domains. Its aims are to further the understanding of genomes in their evolutionary context and further the understanding of evolution from a genome-wide perspective.
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