Suppr超能文献

编码 DXR 型 II 的真细菌基因家族的进化多样性和特征,DXR 型 II 是一种替代的类异戊二烯生物合成酶。

Evolutionary diversification and characterization of the eubacterial gene family encoding DXR type II, an alternative isoprenoid biosynthetic enzyme.

机构信息

Institute for Plant Molecular and Cell Biology - IBMCP (CSIC-UPV), Integrative Systems Biology Group, C/ Ingeniero Fausto Elio s/n,, Valencia 46022, Spain.

出版信息

BMC Evol Biol. 2013 Sep 3;13:180. doi: 10.1186/1471-2148-13-180.

Abstract

BACKGROUND

Isoprenoids constitute a vast family of natural compounds performing diverse and essential functions in all domains of life. In most eubacteria, isoprenoids are synthesized through the methylerythritol 4-phosphate (MEP) pathway. The production of MEP is usually catalyzed by deoxyxylulose 5-phosphate reductoisomerase (DXR-I) but a few organisms use an alternative DXR-like enzyme (DXR-II).

RESULTS

Searches through 1498 bacterial complete proteomes detected 130 sequences with similarity to DXR-II. Phylogenetic analysis identified three well-resolved clades: the DXR-II family (clustering 53 sequences including eleven experimentally verified as functional enzymes able to produce MEP), and two previously uncharacterized NAD(P)-dependent oxidoreductase families (designated DLO1 and DLO2 for DXR-II-like oxidoreductases 1 and 2). Our analyses identified amino acid changes critical for the acquisition of DXR-II biochemical function through type-I functional divergence, two of them mapping onto key residues for DXR-II activity. DXR-II showed a markedly discontinuous distribution, which was verified at several levels: taxonomic (being predominantly found in Alphaproteobacteria and Firmicutes), metabolic (being mostly found in bacteria with complete functional MEP pathways with or without DXR-I), and phenotypic (as no biological/phenotypic property was found to be preferentially distributed among DXR-II-containing strains, apart from pathogenicity in animals). By performing a thorough comparative sequence analysis of GC content, 3:1 dinucleotide frequencies, codon usage and codon adaptation indexes (CAI) between DXR-II sequences and their corresponding genomes, we examined the role of horizontal gene transfer (HGT), as opposed to an scenario of massive gene loss, in the evolutionary origin and diversification of the DXR-II subfamily in bacteria.

CONCLUSIONS

Our analyses support a single origin of the DXR-II family through functional divergence, in which constitutes an exceptional model of acquisition and maintenance of redundant gene functions between non-homologous genes as a result of convergent evolution. Subsequently, although old episodic events of HGT could not be excluded, the results supported a prevalent role of gene loss in explaining the distribution of DXR-II in specific pathogenic eubacteria. Our results highlight the importance of the functional characterization of evolutionary shortcuts in isoprenoid biosynthesis for screening specific antibacterial drugs and for regulating the production of isoprenoids of human interest.

摘要

背景

异戊烯类化合物构成了一个庞大的天然化合物家族,在所有生命领域中发挥着多样化和必不可少的功能。在大多数真细菌中,异戊烯类化合物通过甲基赤藓醇 4-磷酸(MEP)途径合成。MEP 的产生通常由脱氧木酮糖 5-磷酸还原异构酶(DXR-I)催化,但有少数生物体使用替代的 DXR 样酶(DXR-II)。

结果

通过对 1498 个细菌完整蛋白质组的搜索,检测到 130 个与 DXR-II 具有相似性的序列。系统发育分析确定了三个分辨率较高的分支:DXR-II 家族(聚类 53 个序列,其中包括 11 个经实验验证具有产生 MEP 功能的酶),以及两个以前未表征的 NAD(P)-依赖性氧化还原酶家族(分别为 DLO1 和 DLO2,代表 DXR-II 样氧化还原酶 1 和 2)。我们的分析确定了通过 I 型功能分歧获得 DXR-II 生化功能的关键氨基酸变化,其中两个变化映射到 DXR-II 活性的关键残基上。DXR-II 表现出明显的不连续分布,这在几个层面上得到了验证:分类学(主要存在于α变形菌和厚壁菌门)、代谢(主要存在于具有完整功能性 MEP 途径的细菌中,无论是否存在 DXR-I)和表型(除了动物中的致病性外,没有发现任何生物/表型特性优先分布在含有 DXR-II 的菌株中)。通过对 DXR-II 序列与其相应基因组之间的 GC 含量、3:1 二核苷酸频率、密码子使用和密码子适应指数(CAI)进行彻底的比较序列分析,我们研究了水平基因转移(HGT)的作用,而不是大规模基因丢失的情况,在细菌中 DXR-II 亚家族的进化起源和多样化中的作用。

结论

我们的分析支持 DXR-II 家族通过功能分歧单一起源,这是一个非同源基因之间冗余基因功能获得和维持的特殊模型,是趋同进化的结果。随后,尽管不能排除旧的偶然 HGT 事件,但结果支持基因丢失在解释 DXR-II 在特定致病性真细菌中的分布方面起主要作用。我们的结果强调了对异戊烯生物合成中进化捷径的功能特征进行筛选的重要性,以筛选特定的抗菌药物,并调节人类感兴趣的异戊烯类化合物的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1938/3847144/dedc23e41079/1471-2148-13-180-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验