KRAB 锌指蛋白的进化、结构和表达特征之间存在保守的矛盾关系,这揭示了它们的特殊功能特征。

Conserved paradoxical relationships among the evolutionary, structural and expressional features of KRAB zinc-finger proteins reveal their special functional characteristics.

机构信息

State Key Laboratory of Proteomics, Beijing Proteome Research Center, National Center for Protein Sciences (Beijing), Beijing Institute of Lifeomics, Beijing, 102206, China.

Animal Sciences College of Jilin University, Changchun, 130062, China.

出版信息

BMC Mol Cell Biol. 2021 Jan 22;22(1):7. doi: 10.1186/s12860-021-00346-w.

Abstract

BACKGROUND

One striking feature of the large KRAB domain-containing zinc finger protein (KZFP) family is its rapid evolution, leading to hundreds of member genes with various origination time in a certain mammalian genome. However, a comprehensive genome-wide and across-taxa analysis of the structural and expressional features of KZFPs with different origination time is lacking. This type of analysis will provide valuable clues about the functional characteristics of this special family.

RESULTS

In this study, we found several conserved paradoxical phenomena about this issue. 1) Ordinary young domains/proteins tend to be disordered, but most of KRAB domains are completely structured in 64 representative species across the superclass of Sarcopterygii and most of KZFPs are also highly structured, indicating their rigid and unique structural and functional characteristics; as exceptions, old-zinc-finger-containing KZFPs have relatively disordered KRAB domains and linker regions, contributing to diverse interacting partners and functions. 2) In general, young or highly structured proteins tend to be spatiotemporal specific and have low abundance. However, by integrated analysis of 29 RNA-seq datasets, including 725 samples across early embryonic development, embryonic stem cell differentiation, embryonic and adult organs, tissues in 7 mammals, we found that KZFPs tend to express ubiquitously with medium abundance regardless of evolutionary age and structural disorder degree, indicating the wide functional requirements of KZFPs in various states. 3) Clustering and correlation analysis reveal that there are differential expression patterns across different spatiotemporal states, suggesting the specific-high-expression KZFPs may play important roles in the corresponding states. In particular, part of young-zinc-finger-containing KZFPs are highly expressed in early embryonic development and ESCs differentiation into endoderm or mesoderm. Co-expression analysis revealed that young-zinc-finger-containing KZFPs are significantly enriched in five co-expression modules. Among them, one module, including 13 young-zinc-finger-containing KZFPs, showed an 'early-high and late-low' expression pattern. Further functional analysis revealed that they may function in early embryonic development and ESC differentiation via participating in cell cycle related processes.

CONCLUSIONS

This study shows the conserved and special structural, expressional features of KZFPs, providing new clues about their functional characteristics and potential causes of their rapid evolution.

摘要

背景

大 KRAB 结构域含锌指蛋白(KZFP)家族的一个显著特征是其快速进化,导致在某一哺乳动物基因组中存在成百上千个具有不同起源时间的成员基因。然而,对于具有不同起源时间的 KZFPs 的结构和表达特征的全面的全基因组和跨物种分析还很缺乏。这种类型的分析将为这个特殊家族的功能特征提供有价值的线索。

结果

在这项研究中,我们发现了关于这个问题的几个保守的悖论现象。1)普通的年轻结构域/蛋白往往是无序的,但在肉鳍鱼超纲的 64 个代表性物种中,大多数 KRAB 结构域是完全结构的,并且大多数 KZFPs 也是高度结构化的,这表明它们具有刚性和独特的结构和功能特征;作为例外,含古老锌指的 KZFPs 具有相对无序的 KRAB 结构域和连接区域,有助于与多种相互作用的伙伴和功能相互作用。2)一般来说,年轻或高度结构化的蛋白质往往具有时空特异性,并且丰度较低。然而,通过综合分析 29 个 RNA-seq 数据集,包括 725 个样本,涵盖了早期胚胎发育、胚胎干细胞分化、胚胎和成体器官、7 种哺乳动物的组织,我们发现 KZFPs 倾向于以中等丰度在各种状态下广泛表达,而与进化年龄和结构无序程度无关,这表明 KZFPs 在各种状态下的功能需求广泛。3)聚类和相关分析表明,在不同的时空状态下存在差异表达模式,表明特定的高表达 KZFPs 可能在相应的状态下发挥重要作用。特别是,部分含年轻锌指的 KZFPs 在早期胚胎发育和胚胎干细胞向内胚层或中胚层分化中高度表达。共表达分析表明,年轻锌指含 KZFPs 显著富集在五个共表达模块中。其中,一个包含 13 个年轻锌指含 KZFPs 的模块表现出“早期高、晚期低”的表达模式。进一步的功能分析表明,它们可能通过参与细胞周期相关过程在早期胚胎发育和 ESC 分化中发挥作用。

结论

本研究展示了 KZFPs 的保守和特殊的结构、表达特征,为其功能特征及其快速进化的潜在原因提供了新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4a1/7821633/0f895f89c0dd/12860_2021_346_Fig1_HTML.jpg

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