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深海细菌中的蛋白质进化:氨基酸替换率分析

Protein evolution in deep sea bacteria: an analysis of amino acids substitution rates.

作者信息

Campanaro Stefano, Treu Laura, Valle Giorgio

机构信息

CRIBI Biotechnology Centre, Department of Biology, University of Padua, Via U. Bassi 38/b, 35121, Padua, Italy.

出版信息

BMC Evol Biol. 2008 Nov 13;8:313. doi: 10.1186/1471-2148-8-313.

Abstract

BACKGROUND

Abyssal microorganisms have evolved particular features that enable them to grow in their extreme habitat. Genes belonging to specific functional categories are known to be particularly susceptible to high-pressure; therefore, they should show some evidence of positive selection. To verify this hypothesis we computed the amino acid substitution rates between two deep-sea microorganisms, Photobacterium profundum SS9 and Shewanella benthica KT99, and their respective shallow water relatives.

RESULTS

A statistical analysis of all the orthologs, led to the identification of positive selected (PS) genes, which were then used to evaluate adaptation strategies. We were able to establish "Motility" and "Transport" as two classes significantly enriched with PS genes. The prevalence of transporters led us to analyze variable amino acids (PS sites) by mapping them according to their membrane topology, the results showed a higher frequency of substitutions in the extra-cellular compartment. A similar analysis was performed on soluble proteins, mapping the PS sites on the 3D structure, revealing a prevalence of substitutions on the protein surface. Finally, the presence of some flagellar proteins in the Vibrionaceae PS list confirms the importance of bacterial motility as a SS9 specific adaptation strategy.

CONCLUSION

The approach presented in this paper is suitable for identifying molecular adaptations to particular environmental conditions. The statistical method takes into account differences in the ratio between non-synonymous to synonymous substitutions, thus allowing the detection of the genes that underwent positive selection. We found that positive selection in deep-sea adapted bacteria targets a wide range of functions, for example solute transport, protein translocation, DNA synthesis and motility. From these data clearly emerges an involvement of the transport and metabolism processes in the deep-sea adaptation strategy of both bathytypes considered, whereas the adaptation of other biological processes seems to be specific to either one or the other. An important role is hypothesized for five PS genes belonging to the transport category that had been previously identified as differentially expressed in microarray experiments. Strikingly, structural mapping of PS sites performed independently on membrane and soluble proteins revealed that residues under positive selection tend to occur in specific protein regions.

摘要

背景

深海微生物进化出了特定的特征,使其能够在极端环境中生长。已知属于特定功能类别的基因对高压特别敏感;因此,它们应该显示出一些正选择的证据。为了验证这一假设,我们计算了两种深海微生物——深海发光杆菌SS9和底栖希瓦氏菌KT99与其各自浅水亲缘种之间的氨基酸替代率。

结果

对所有直系同源基因进行统计分析,鉴定出正选择(PS)基因,然后用这些基因评估适应策略。我们能够确定“运动性”和“转运”是两个显著富集PS基因的类别。转运蛋白的普遍性促使我们根据其膜拓扑结构对可变氨基酸(PS位点)进行定位分析,结果显示细胞外区域的替代频率更高。对可溶性蛋白进行了类似分析,将PS位点映射到三维结构上,结果显示蛋白表面的替代更为普遍。最后,弧菌科PS列表中一些鞭毛蛋白的存在证实了细菌运动性作为SS9特定适应策略的重要性。

结论

本文提出的方法适用于识别对特定环境条件的分子适应。该统计方法考虑了非同义替代与同义替代比率的差异,从而能够检测经历正选择的基因。我们发现,深海适应细菌中的正选择针对广泛的功能,例如溶质转运、蛋白质易位、DNA合成和运动性。从这些数据可以清楚地看出,转运和代谢过程参与了所考虑的两种深海类型的深海适应策略,而其他生物过程的适应似乎特定于其中一种或另一种。据推测,属于转运类别的五个PS基因具有重要作用,这些基因先前已在微阵列实验中被鉴定为差异表达。引人注目的是,对膜蛋白和可溶性蛋白独立进行的PS位点结构映射显示,正选择下的残基倾向于出现在特定的蛋白质区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7d5/2600651/0dd23f864ea2/1471-2148-8-313-1.jpg

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