A Quantitative Approach to Analyzing Genome Reductive Evolution Using Protein-Protein Interaction Networks: A Case Study of Mycobacterium leprae

被引:0
作者
Akinola, Richard O. [1 ,2 ]
Mazandu, Gaston K. [1 ,3 ,4 ]
Mulder, Nicola J. [1 ]
机构
[1] Univ Cape Town, Sch Med, Inst Infect Dis & Mol Med, Dept Integrat Biomed Sci,Computat Biol Grp, ZA-7925 Cape Town, South Africa
[2] Univ Jos, Fac Nat Sci, Dept Math, Jos, Niger
[3] African Inst Math Sci, Cape Town, South Africa
[4] African Inst Math Sci, Cape Coast, Ghana
关键词
SELF-SIMILARITY; SMALL-WORLD; TUBERCULOSIS; DATABASE; TRANSPORT; DYNAMICS; BIOLOGY;
D O I
10.5589/fgene.2016.00039
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The advance in high-throughput sequencing technologies has yielded complete genome sequences of several organisms, including complete bacterial genomes. The growing number of these available sequenced genomes has enabled analyses of their dynamics, as well as the molecular and evolutionary processes which these organisms are under. Comparative genomics of different bacterial genomes have highlighted their genome size and gene content in association with lifestyles and adaptation to various environments and have contributed to enhancing our understanding of the mechanisms of their evolution. Protein-protein functional interactions mediate many essential processes for maintaining the stability of the biological systems under changing environmental conditions. Thus, these interactions play crucial roles in the evolutionary processes of different organisms, especially for obligate intracellular bacteria, proven to generally have reduced genome sizes compared to their nearest free-living relatives. In this study, we used the approach based on the Renormalization Group (RG) analysis technique and the Maximum-Excluded-Mass-Burning (MEMB) model to investigate the evolutionary process of genome reduction in relation to the organization of functional networks of two organisms. Using a Mycobacteriurn leprae (MLP) network in comparison with a Mycobacteriurn tuberculosis (MTB) network as a case study, we show that reductive evolution in MLP was as a result of removal of important proteins from neighbors of corresponding orthologous MTB proteins. While each orthologous MTB protein had an increase in number of interacting partners in most instances, the corresponding MLP protein had lost some of them. This work provides a quantitative model for mapping reductive evolution and protein-protein functional interaction network organization in terms of roles played by different proteins in the network structure.
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页数:12
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