Bioinformatics Centre (Centre of Excellence in Structural Biology and Bio-computing), Indian Institute of Science, Bangalore, India.
J Mol Evol. 2010 May;70(5):466-78. doi: 10.1007/s00239-010-9345-z. Epub 2010 May 18.
The discovery of GH (Glycoside Hydrolase) 19 chitinases in Streptomyces sp. raises the possibility of the presence of these proteins in other bacterial species, since they were initially thought to be confined to higher plants. The present study mainly concentrates on the phylogenetic distribution and homology conservation in GH19 family chitinases. Extensive database searches are performed to identify the presence of GH19 family chitinases in the three major super kingdoms of life. Multiple sequence alignment of all the identified GH19 chitinase family members resulted in the identification of globally conserved residues. We further identified conserved sequence motifs across the major sub groups within the family. Estimation of evolutionary distance between the various bacterial and plant chitinases are carried out to better understand the pattern of evolution. Our study also supports the horizontal gene transfer theory, which states that GH19 chitinase genes are transferred from higher plants to bacteria. Further, the present study sheds light on the phylogenetic distribution and identifies unique sequence signatures that define GH19 chitinase family of proteins. The identified motifs could be used as markers to delineate uncharacterized GH19 family chitinases. The estimation of evolutionary distance between chitinase identified in plants and bacteria shows that the flowering plants are more related to chitinase in actinobacteria than that of identified in purple bacteria. We propose a model to elucidate the natural history of GH19 family chitinases.
链霉菌中 GH(糖苷水解酶)19 几丁质酶的发现使人们意识到这些蛋白可能存在于其他细菌物种中,因为最初人们认为它们只存在于高等植物中。本研究主要集中于 GH19 家族几丁质酶的系统发育分布和同源性保守性。通过广泛的数据库搜索,确定了三大生命超界中 GH19 家族几丁质酶的存在。对所有鉴定的 GH19 几丁质酶家族成员进行多序列比对,确定了全局保守残基。我们进一步鉴定了家族内主要亚群之间的保守序列基序。对各种细菌和植物几丁质酶之间的进化距离进行估计,以更好地了解进化模式。我们的研究还支持水平基因转移理论,该理论认为 GH19 几丁质酶基因是从高等植物转移到细菌的。此外,本研究还揭示了 GH19 几丁质酶家族蛋白的系统发育分布和独特的序列特征。鉴定出的基序可作为标记来描绘未鉴定的 GH19 家族几丁质酶。对植物和细菌中鉴定出的几丁质酶之间的进化距离进行估计表明,与紫细菌中鉴定出的几丁质酶相比,开花植物与放线菌中的几丁质酶更为相关。我们提出了一个模型来阐明 GH19 家族几丁质酶的自然历史。