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全面分析翻译控制肿瘤蛋白(TCTP)为谱系特异性进化和功能分化提供了深入的见解。

Comprehensive analysis of Translationally Controlled Tumor Protein (TCTP) provides insights for lineage-specific evolution and functional divergence.

机构信息

Korean Bioinformation Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea.

Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea.

出版信息

PLoS One. 2020 May 6;15(5):e0232029. doi: 10.1371/journal.pone.0232029. eCollection 2020.

Abstract

BACKGROUND

Translationally controlled tumor protein (TCTP) is a conserved, multifunctional protein involved in numerous cellular processes in eukaryotes. Although the functions of TCTP have been investigated sporadically in animals, invertebrates, and plants, few lineage-specific activities of this molecule, have been reported. An exception is in Arabidopsis thaliana, in which TCTP (AtTCTP1) functions in stomatal closuer by regulating microtubule stability. Further, although the development of next-generation sequencing technologies has facilitated the analysis of many eukaryotic genomes in public databases, inter-kingdom comparative analyses using available genome information are comparatively scarce.

METHODOLOGY

To carry out inter-kingdom comparative analysis of TCTP, TCTP genes were identified from 377 species. Then phylogenetic analysis, prediction of protein structure, molecular docking simulation and molecular dynamics analysis were performed to investigate the evolution of TCTP genes and their binding proteins.

RESULTS

A total of 533 TCTP genes were identified from 377 eukaryotic species, including protozoa, fungi, invertebrates, vertebrates, and plants. Phylogenetic and secondary structure analyses reveal lineage-specific evolution of TCTP, and inter-kingdom comparisons highlight the lineage-specific emergence of, or changes in, secondary structure elements in TCTP proteins from different kingdoms. Furthermore, secondary structure comparisons between TCTP proteins within each kingdom, combined with measurements of the degree of sequence conservation, suggest that TCTP genes have evolved to conserve protein secondary structures in a lineage-specific manner. Additional tertiary structure analysis of TCTP-binding proteins and their interacting partners and docking simulations between these proteins further imply that TCTP gene variation may influence the tertiary structures of TCTP-binding proteins in a lineage-specific manner.

CONCLUSIONS

Our analysis suggests that TCTP has undergone lineage-specific evolution and that structural changes in TCTP proteins may correlate with the tertiary structure of TCTP-binding proteins and their binding partners in a lineage-specific manner.

摘要

背景

翻译控制肿瘤蛋白(TCTP)是一种保守的多功能蛋白,参与真核生物的许多细胞过程。尽管 TCTP 的功能在动物、无脊椎动物和植物中已经被零星地研究过,但这种分子的特异性功能却很少被报道。一个例外是在拟南芥中,TCTP(AtTCTP1)通过调节微管稳定性在气孔关闭中起作用。此外,尽管下一代测序技术的发展促进了公共数据库中许多真核生物基因组的分析,但利用现有基因组信息进行的跨领域比较分析相对较少。

方法

为了进行 TCTP 的跨领域比较分析,从 377 个物种中鉴定了 TCTP 基因。然后进行了系统发育分析、蛋白质结构预测、分子对接模拟和分子动力学分析,以研究 TCTP 基因及其结合蛋白的进化。

结果

从 377 个真核物种中总共鉴定出 533 个 TCTP 基因,包括原生动物、真菌、无脊椎动物、脊椎动物和植物。系统发育和二级结构分析揭示了 TCTP 的谱系特异性进化,跨领域比较突出了来自不同领域的 TCTP 蛋白中二级结构元件的谱系特异性出现或变化。此外,每个领域内的 TCTP 蛋白的二级结构比较,结合序列保守性的测量,表明 TCTP 基因已经进化为以谱系特异性的方式保守蛋白质二级结构。对 TCTP 结合蛋白及其相互作用伙伴的额外三级结构分析以及这些蛋白质之间的对接模拟进一步表明,TCTP 基因的变异可能以谱系特异性的方式影响 TCTP 结合蛋白的三级结构。

结论

我们的分析表明,TCTP 经历了谱系特异性进化,TCTP 蛋白的结构变化可能与 TCTP 结合蛋白及其结合伙伴的三级结构以谱系特异性的方式相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d7a/7202613/578c80692056/pone.0232029.g001.jpg

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