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拟南芥和水稻中溴结构域基因家族的全基因组分析。

Genome-wide analysis of bromodomain gene family in Arabidopsis and rice.

作者信息

Abiraami T V, Sanyal Ravi Prakash, Misra Hari Sharan, Saini Ajay

机构信息

Molecular Biology Division, Bhabha Atomic Research Centre, Mumbai, Maharashtra, India.

Homi Bhabha National Institute, Mumbai, Maharashtra, India.

出版信息

Front Plant Sci. 2023 Mar 8;14:1120012. doi: 10.3389/fpls.2023.1120012. eCollection 2023.

Abstract

The bromodomain-containing proteins (BRD-proteins) belongs to family of 'epigenetic mark readers', integral to epigenetic regulation. The BRD-members contain a conserved 'bromodomain' (BRD/BRD-fold: interacts with acetylated-lysine in histones), and several additional domains, making them structurally/functionally diverse. Like animals, plants also contain multiple Brd-homologs, however the extent of their diversity and impact of molecular events (genomic duplications, alternative splicing, AS) therein, is relatively less explored. The present genome-wide analysis of -gene families of and showed extensive diversity in structure of genes/proteins, regulatory elements, expression pattern, domains/motifs, and the bromodomain (w.r.t. length, sequence, location) among the Brd-members. Orthology analysis identified thirteen ortholog groups (OGs), three paralog groups (PGs) and four singleton members (STs). While more than 40% -genes were affected by genomic duplication events in both plants, AS-events affected 60% and 41% . genes. These molecular events affected various regions (promoters, untranslated regions, exons) of different Brd-members with potential impact on expression and/or structure-function characteristics. RNA-Seq data analysis indicated differences in tissue-specificity and stress response of Brd-members. Analysis by RT-qPCR revealed differential abundance and salt stress response of duplicate and . -genes. Further analysis of gene, showed salinity-induced modulation of splicing pattern. Bromodomain (BRD)-region based phylogenetic analysis placed the and . homologs into clusters/sub-clusters, mostly consistent with ortholog/paralog groups. The bromodomain-region displayed several conserved signatures in key BRD-fold elements (α-helices, loops), along with variations (1-20 sites) and indels among the BRD-duplicates. Homology modeling and superposition identified structural variations in BRD-folds of divergent and duplicate BRD-members, which might affect their interaction with the chromatin histones, and associated functions. The study also showed contribution of various duplication events in -gene family expansion among diverse plants, including several monocot and dicot plant species.

摘要

含溴结构域蛋白(BRD蛋白)属于“表观遗传标记读取器”家族,是表观遗传调控所必需的。BRD家族成员包含一个保守的“溴结构域”(BRD/BRD折叠:与组蛋白中的乙酰化赖氨酸相互作用)以及几个其他结构域,这使得它们在结构和功能上具有多样性。与动物一样,植物也含有多个BRD同源物,然而,它们的多样性程度以及其中分子事件(基因组重复、可变剪接、AS)的影响相对较少被研究。目前对[具体植物1]和[具体植物2]基因家族的全基因组分析表明,BRD家族成员在基因/蛋白质结构、调控元件、表达模式、结构域/基序以及溴结构域(在长度、序列、位置方面)存在广泛的多样性。直系同源分析确定了13个直系同源组(OG)、3个旁系同源组(PG)和4个单拷贝成员(ST)。虽然在这两种植物中超过40%的[具体基因1]基因受到基因组重复事件的影响,但可变剪接事件分别影响了60%的[具体基因1]基因和41%的[具体基因2]基因。这些分子事件影响了不同BRD家族成员的各个区域(启动子、非翻译区、外显子),对表达和/或结构功能特征具有潜在影响。RNA测序数据分析表明BRD家族成员在组织特异性和应激反应方面存在差异。通过RT-qPCR分析揭示了重复的[具体基因1]和[具体基因2]基因的丰度差异和盐胁迫反应。对[具体基因3]基因([具体植物1])的进一步分析表明,盐度诱导了剪接模式的调节。基于溴结构域(BRD)区域的系统发育分析将[具体植物1]和[具体植物2]的同源物归入簇/子簇,大多与直系同源/旁系同源组一致。溴结构域区域在关键的BRD折叠元件(α螺旋、环)中显示出几个保守特征,同时在BRD重复序列之间存在变异(1 - 20个位点)和插入缺失。同源建模和叠加确定了不同和重复的BRD家族成员的BRD折叠中的结构变异,这可能会影响它们与染色质组蛋白的相互作用以及相关功能。该研究还表明各种重复事件对不同植物(包括几种单子叶和双子叶植物物种)中[具体基因家族]基因家族扩张的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8897/10030601/e338be1193db/fpls-14-1120012-g001.jpg

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